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作者信息   主题: U-2发展史47545

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FOREWORD (2016)
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The two fabulous spyplanes described in this book have fascinated me for most of my adult life. The history of the U-2 and the A- 12 and SR-71 Blackbird series is a heady mix of audacity, bravery, secrecy, and technological prowess. Sixty years after its first flight, the U-2 is still serving as the world’s premier high-altitude reconnaissance aircraft. More than forty years after its first flight, the Blackbird is still recognized as an aerodynamic masterpiece to match the current state-of-the-art.
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Both aircraft were conceived and sponsored by the CIA and subsequently embraced by the US Air Force. This book therefore tells only part of their story. But what a story it is! The scientist whose vision and influence prompted extraordinary action by government. The aircraft designer who made good on his promise to “Be Quick, Be Quiet, Be on Time.” The economics professor who mastered the management of complex high-tech projects. The President who understood the value—and the limitations—of covert  action.  The  supporting  cast  of  engineers,  mission  planners,  pilots,  photo interpreters, and intelligence analysts, whose diligence and determination made a success ofit all.
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But this book also tells a story of disappointment. When the U-2 began flying over the Soviet Union in 1956, the CIA expected that its high cruising altitude would prevent interception by Soviet fighters. The Agency further hoped that Soviet radars would not detect a relatively small aircraft at 70,000 feet. That hope was dashed, a protest followed from Moscow, and the President never again gave blanket permission for overflights.
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Much the same happened with the A- 12. It was designed with a low radar cross-section, but the Soviets deployed a new early-warning radar that could nevertheless detect it. After the shootdown of the U-2 on May Day 1960, and the subsequent political furore, the White House was never likely to grant permission for A- 12 overflights of the Soviet Union. The CIA’s OXCART program withered and eventually died.
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How does this book treat the May Day incident? Over the intervening years, many observers have questioned the decision to launch this mission. The authors usefully describe the growing concern, from technical analysis, that the new Soviet SA-2 missile could reach the U-2. They also describe the pressure  on the intelligence  community in the preceding months to  determine whether the  Soviet Union really had achieved superiority in the deployment of ballistic missiles. The judgment of this book, namely that “the risks had increased substantially. (But) the lure of the prospective intelligence gain from each mission was too strong,” accords with my own.
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Contrary to popular belief, May Day 1960 did not mark the end of the U-2 program. The authors describe the aircraft’s continued use throughout the 1960s over Cuba, China, Vietnam, and elsewhere. Chinese nationalist pilots from Taiwan braved SA-2 missiles over China in their U-2s, and five were shot down. But when American pilots were required to fly over territory defended by that missile— North Korea, North Vietnam—they did it in the less vulnerable A- 12.
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Some readers will be puzzled by the existence of parallel programs—CIA and US Air Force—fo both these aircraft during the  1960s. The authors broach this subject in their coverage of the Cuban Missile Crisis, when “overt” military U-2 flights superseded “covert” civilian flights. In fact, the US government has always valued the option of deniability when staging reconnaissance flights. Today, the CIA and the US Air Force both operate MQ-1/9 Predator/Reaper UAVs. The CIA flies out o bases  overseas that the host nation wishes to remain secret.  In my book 50  Years  of the  U-2,  I describe the interplay between the two U-2 programs.
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Parallel operations of the CIA’s A- 12 and the Air Force’s SR-71 ended in 1968, a decision that was partly budget-driven.  The  CIA stopped  flying the U-2  six years  later, but not before  it had sponsored the development of an enlarged and improved version.
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In subsequent years, that sponsorship has paid off tremendously for the US. For while the Air Force finally retired its Blackbirds in 1998, the improved version of the U-2 has continued in service to this day.  With its  sophisticated  digital  sensor  suite,  networked  communications,  and  protection  from interception by an advanced defensive system, today’s U-2 is a far cry from the one that took off on its maiden flight in  1955.  But  the  concept  is  still  the  same—fly  an  aircraft  high  enough  to  collect intelligence on potential adversaries that cannot be obtained by any other means.
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—Chris Pocock Author, 50 Years ofthe U-2 and Dragon Lady Today



  玉树凌疯,风流涕淌,装傻充愣,我本纯情
作者信息   主题: U-2发展史47546

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  发表时间: 2026-9-15 14:44:07             

特别提示:本帖子在 2026-9-15 14:44:28 由用户 412886049 编辑过

PREFACE (2016)
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The CIA’s Official History of the U-2 and OXCART Programs: A Look Back after 26 Years
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When I left academia to join the CIA’s History Staff in January 1986, I was soon asked to work on the official,   classified   history   of  the   Agency’s   overhead   reconnaissance   programs.   Donald   E. Welzenbach, a member of the Directorate of Science and Technology on a rotational assignment with the History Staff, had already prepared a large manuscript that covered all of the Agency’s overhead reconnaissance programs—both manned aircraft and the later satellite programs—and had conducted many interviews with key individuals inside and outside of the CIA. The Chief of the History Staff, J Kenneth McDonald, wanted me to revise and edit this manuscript—which had focused primarily on technological aspects of the programs and internal CIA decision-making—and also add additional material  that  placed  the  Agency’s  activities  and  decisions  within  their  historical  context.  After reviewing the draft manuscript I recommended splitting it into two volumes, one covering aircraft and the other covering satellites, because the levels of clearance required for the two subjects were very different. Thus Ken McDonald and I decided that the manned aircraft history could be published at the Secret level in order to enable wide distribution within the intelligence community, whereas the satellite volume would have to stay at the Top Secret Codeword level.
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During the next 3¾ years I spent most of my time  as a  CIA Historian working on the manned aircraft volume. I conducted additional research in President Eisenhower’s papers and other archives to  learn  more  about  the  Eisenhower  Administration’s  decision-making  with  regards  to  the  U-2 program, in particular the decisions to authorize each of the overflights of the Soviet Union. I also looked at media coverage of the two big “gaps” of the  1950s,  the  so-called  “bomber  gap”  and “missile  gap”  that  had  played   such  an  important  role  in  putting  pressure  on  the  Eisenhower Administration  to   learn  more   about  the   Soviet  Union’s   actual   capabilities   in  these   areas.  I supplemented  this  research  in  classified   and  unclassified  records  with  additional   interviews, including General (Retired) Andrew J. Goodpaster, who as a Colonel had served as the White House Staff Secretary for President Eisenhower and had been a key participant at meetings in which the President took decisions on overflights of the  Soviet Union.  When the  subjects of the additional interviews were primarily technical, Don Welzenbach joined me  for the interviews, in particular those conducted at Lockheed, where we visited the famous “Skunk Works” (I still use the  Skunk Works coffee mug that I acquired during that visit). The final version of the text was mainly my work, but  I  could  never  have  written  it  without  having had  the  benefit  of the  extensive  research  and interviews that Don had done before I joined the History Staff.
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Most of the information regarding the CIA’s manned reconnaissance aircraft was no longer highly sensitive by the 1980s. After all, the existence of a CIA-led program of reconnaissance flights over the Soviet Union had been revealed in a spectacular fashion when Francis Gary Powers’s U-2 was shot down over the  Soviet Union in May 1960. Thus writing this history at the  Secret level was generally not a problem, and the older, more highly classified documents cited in the history could be downgraded to the new level. But there was one subject that I could not mention at the Secret level in the  1980s: the National Reconnaissance Office (NRO). Its name and the very fact of its  existence were still classified at the Top Secret Codeword level, so I had to remove any references to the name NRO itself and keep my references to its role in the manned aircraft program very general. Thus in the preface to the manuscript that I completed in 1989 (and was published in 1992), I wrote, “Some aspects of the overhead reconnaissance program, particularly those involving satellites and related interagency agreements,  have  had  to  be  described  in  very  general  terms.”  The  existence  of the National Reconnaissance Office was not declassified until September 1992, after the CIA’s history of overhead reconnaissance had been published.
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While conducting this additional research on the U-2 and OXCART programs, I read every book could  find  on  these  aircraft,  the   CIA,   and  the   Eisenhower  Administration.  A  key  source   in understanding the US Air Force’s search for a new, high-altitude reconnaissance aircraft in the early 1950s was Jay Miller’s Lockheed U-2, published in 1983. This lavishly illustrated book became the source for some of the photographs used in the  CIA’s history of the  U-2 because they illustrated important points for which I could not find similar photos within the Agency. Due to the classified nature of our publication at that time, I could not contact the publisher to ask permission to use these photos, but I did give credit in footnotes for the information found in Miller’s very informative book.
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Shortly before I finished the manuscript and left the Agency at the end of September 1989 to take up a new post with NATO (as the Chief of the Historical Office at the Supreme Headquarters Allied Powers Europe, a post I held until I retired in July 2015), a new book came out on the U-2: Chri Pocock’s Dragon Lady: The History of the U-2 Spyplane. I quickly read it with great interest and was amazed by how much information he had been able to compile despite not having access to the official, classified records. In my Preface to the official history I wrote:
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After the present study of the Agency’s overhead reconnaissance projects was completed, a new book on the U-2 was published in the United Kingdom.  Chris  Pocock’sDragon Lady:  The History ofthe U-2 Spyplane is by far the most accurate unclassified account of the U-2 program. Pocock  has  been  able  to  compensate  for  his  lack  of  access  to  classified  documents  by interviewing many former participants in the program, especially former pilots. Pocock is also quite familiar with aircraft itself, for he had worked with Jay Miller on the latter’s excellent technical study of the U-2: Lockheed U-2 (1983).
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In the  twenty-six years  since  I  wrote  those  words,  Chris  has  continued  to  find  more  and  more information about the U-2 and its missions, and has published four more books on the subject: The  U- 2 Spyplane: Toward the Unknown (2000); 50 Years of the U-2 (2005); The Black Bats—CIA spy Flights over China from Taiwan (2010); and Dragon Lady Today: The Continuing Story ofthe U-2 Spyplane (2014). Thus anyone looking for information about the U-2 now should not just read the official history but should also consult Chris’s very detailed and highly accurate U-2 books.
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After the CIA released a heavily redacted version of the overhead reconnaissance history in 1998, a number of independent publishers created mediocre quality reprints of the book by taking the low resolution photocopies released by the Agency and putting their own covers on it. I am therefore glad that Skyhorse Publishing has prepared this new edition that includes the much more complete release of 2013 and has been professionally typeset for a more attractive and readable appearance.



  玉树凌疯,风流涕淌,装傻充愣,我本纯情
作者信息   主题: U-2发展史47547

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  发表时间: 2026-9-15 14:57:24             


Searching for a System
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THE NEED FOR HIGH-ALTITUDE RECONNAISSANCE
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For centuries, soldiers in wartime have sought the highest ground or structure in order to get a better view of the enemy. At first it was tall trees, then church steeples and bell towers. By the time of the American Civil War and the Franco-Prussian War of 1870-71, observers were using hot-air balloons to get up in the sky for a better view of the “other side of the hill.” With the advent of dry film, it became  possible  to  carry  cameras  into  the  sky  to  record  the  disposition  of  enemy  troops  and emplacements. Indeed, photoreconnaissance proved so valuable during World War I that in l938 Gen. Werner von Fritsch, Commander in Chief of the German Army, predicted: “The nation with the best aerial reconnaissance facilities will win the next war.”l
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By World  War  II,  lenses,  films,  and  cameras  had  undergone  many  improvements,  as  had  the airplane, which could fly higher and faster than the primitive craft of World War I. Now it was possible to use photoreconnaissance to obtain information about potential targets before a bombing raid and to assess the effectiveness of the bombing afterward.
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Peacetime  applications  of high-altitude  photography  at  first  included  only  photomapping  and surveying for transcontinental highways and mineral and oil exploration. There was little thought given to using photography for peacetime espionage until after World War II, when the Iron Curtain rang down and cut off most forms of communication between the Soviet Bloc of nations and the rest of the world.
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By l949 the Soviet Union and the states of Eastern Europe had been effectively curtained off from the  outside  world,  and  the  Soviet  military  carried  out  its  planning,  production,  and  deployment activities  with  the  utmost  secrecy.  All   Soviet   strategic  capabilities—bomber  forces,  ballistic missiles, submarine forces, and nuclear weapons plants—were concealed from outside observation. The Soviet air defense system, a prime consideration in determining US retaliatory policies, was also largely an unknown factor.
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Tight security along the Soviet Bloc borders severely curtailed the movement of human intelligence sources. In addition, the Soviet Union made its conventional means of communication—telephone, telegraph, and radio-telephone—more secure, thereby greatly reducing the intelligence available from these sources. The stringent security measures imposed by the Communist Bloc nations effectively blunted  traditional   methods   for   gathering  intelligence:   secret   agents   using   covert  means  to communicate intelligence, travelers to and from target areas who could be asked to keep their eyes open and report their  observations  later,  wiretaps  and  other  eavesdropping  methods,  and postal intercepts. Indeed, the entire panoply of intelligence tradecraft seemed ineffective against the Soviet Bloc, and no other methods were available.
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Early Postwar Aerial Reconnaissance
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Although at the end of World War II the United States had captured large quantities of German photos and documents on the Soviet Union, this material was rapidly becoming outdated. The main source of current intelligence on the Soviet Union’s military installations was interrogation of prisoners of war returning  from  Soviet  captivity.  To  obtain  information  about  Soviet  scientific  progress,  the intelligence community established  several programs to debrief German scientists who had been taken to the Soviet Union after the end of the war but were now being allowed to leave.2
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Interrogation of returning Germans offered only fragmentary information, and this source could not be expected to last much longer. As a result, in the late  1940s, the US Air Force and Navy began trying to obtain aerial photography of the Soviet Union. The main Air Force effort involved Boeing RB-47 aircraft (the reconnaissance version of the B-47 jet-propelled medium bomber) equipped with cameras and electronic “ferret” equipment that enabled aircrews to detect tracking by Soviet radars. At that time the Soviet Union had not yet completely ringed its borders with radars, and much of the interior also lacked radar coverage. Thus, when the RB-47s found a gap in the air-warning network, they would dart inland to take photographs of any accessible targets. These “penetration photography” flights (called SENSINT—sensitive intelligence—missions) occurred along the northern and Pacifi coasts of Russia. One RB-47 aircraft even managed to fly 450 miles inland and photograph the city of Igarka in Siberia. Such intrusions brought protests from Moscow but no Soviet military response.3
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In 1950 there was a major change in Soviet policy. Air defense units became very aggressive in defending their airspace, attacking all aircraft that came near the borders of the Soviet Union. On 8 April  1950,  Soviet  fighters  shot  down  a  US Navy Privateer patrol  aircraft over the  Baltic  Sea Following the outbreak of the Korean war in June 1950, the Soviet Union extended its “severe air defense policy” to the Far East. In the autumn of 1951, Soviet aircraft downed a twin-engine US Navy Neptune bomber near Vladivostok. An RB-29 lost in the Sea of Japan on 13 June 1952 was probably also a victim of Soviet fighters. The United  States was not the only country affected by the new aggressive Soviet air defense policy; Britain and Turkey also reported attacks on their planes.4
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The Soviet Union’s air defense policy became even more aggressive in August 1952, when its reconnaissance aircraft began violating Japanese airspace over Hokkaido, the northernmost Japanese home island. Two months later, on 7 October 1952, Soviet fighter aircraft stalked and shot down a US RB-29 flying over Hokkaido. Aerial reconnaissance of the Soviet Union and surrounding area had become a very dangerous business.
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Despite the growing risks associated with aerial reconnaissance of the  Soviet Bloc, senior US officials  strongly believed that such missions were necessary.  The lack of information about the Soviet Union, coupled with the perception that it was an aggressive nation determined to expand its borders—a  perception  that  had  been  greatly  strengthened  by  the   Soviet-backed  North  Korean invasion of South Korea  in June  1950—increased  US  determination  to  obtain  information abou Soviet intentions and capabilities and thus reduce the danger of being surprised by a Soviet attack.
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New Approaches to Photoreconnaissance
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While existing Navy and Air Force aircraft were flying their risky reconnaissance missions over the Soviet Union, the United States began planning for a more systematic and less dangerous approach using new technology. One of the leading advocates ofthe need for new, high-altitude reconnaissance aircraft was Richard S. Leghorn, a Massachusetts Institute of Technology graduate and employee of Eastman Kodak who had commanded the Army Air Forces ’ 67th Reconnaissance  Group in Europe during  World  War  II.  After  the  war  he  returned  to  Kodak  but   maintained  his   interest  in photoreconnaissance.  Leghorn  strongly  believed  in  the  need  for  what  he  called  pre-D-day reconnaissance, that is, reconnaissance of a potential enemy before the outbreak of actual hostilities, in contrast to combat reconnaissance in wartime. In papers presented in 1946 and  1948, Leghorn argued that the United States needed to develop such a capability, which would require high-altitude aircraft and high-resolution cameras. The outbreak of the Korean war gave Leghorn an opportunity to put his ideas into effect. Recalled to active duty by the Air Force, Lieutenant Colonel Leghorn became the head of the Reconnaissance Systems Branch of the Wright Air Development Command at Dayton Ohio, in April 1951.5
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In Leghorn’s view, altitude was the key to success for overhead reconnaissance. Since the best Soviet interceptor at that time, the MIG- 17, had to struggle to reach 45,000 feet Leghorn reasoned that an aircraft that could exceed 60,000 feet would be safe from Soviet fighters. Recognizing that the fastest way to produce a high-altitude reconnaissance aircraft was to modify an existing aircraft, he began looking for the highest flying aircraft available in the Free World. This search soon led him to a British twin-engine medium bomber—the Canberra—built by the English Electric Company. The Canberra had made its first flight in May 1949. Its speed of 469 knots (870 kilometers per hour) and its service ceiling of 48,000 feet made the Canberra a natural choice for high-altitude reconnaissance work. The Royal Air Force quickly developed a reconnaissance version of the Canberra, the PR3 (the PR stood for photoreconnaissance), which began flying in March 1950.7
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At  Leghorn’s  insistence,  the  Wright  Air  Development  Command  invited  English  Electric representatives to Dayton in the summer of 1951 to help find ways to make the Canberra fly even higher. By this time the Air Force had already adopted the bomber version of the Canberra, which the Glenn L.  Martin Aircraft  Company was  to produce  under  license  as  the  B-57  medium bomber Leghorn and his English Electric colleagues designed a new Canberra configuration with very long high-lift wings,  new  Rolls-Royce  Avon-109  engines,  a  solitary  pilot,  and  an  airframe  that  was stressed to  less than the  standard  military specifications.  Leghorn calculated  that a  Canberra  so equipped might reach 63,000 feet early in a long mission and as high as 67,000 feet as the declining fuel supply lightened the aircraft. He believed that such a modified Canberra could penetrate the Soviet Union and China for a radius of 800 miles from bases around their periphery and photograph up to 85 percent of the intelligence targets in those countries.
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Leghorn persuaded his superiors to submit his suggestion to the Pentagon for funding. He had not, however, cleared his idea with the Air Research and Development Command, whose reconnaissance division in Baltimore, headed by Lt. Col. Joseph J. Pellegrini, had to approve all new reconnaissance aircraft designs. Pellegrini’s unit reviewed Leghorn’s design and ordered extensive modifications. According to  Leghorn,  Pellegrini  was  not interested  in a  special-purpose  aircraft  that was  only suitable  for  covert  peacetime  reconnaissance  missions,  for  he  believed  that  all  Air  Force reconnaissance aircraft should be capable of operating under wartime conditions. Pellegrini therefore insisted that Leghorn’s design meet the specifications for combat aircraft, which required heavily stressed airframes, armor plate, and other apparatus that made an aircraft too heavy to reach the higher  altitudes  necessary for  safe  overflights  of the  Soviet  Bloc.  The  final  result  of Leghorn’s concept after its alteration by Pellegrini’s staff was the RB-57D in 1955, whose maximum altitude was only 64,000 feet. Meanwhile Leghorn, frustrated by the rejection of his original concept, had transferred  to  the  Pentagon  in  early  1952 to  work  for  Col.  Bernard  A.  Schriever,  Assistant  for Development Planning to the Air Force’s Deputy Chief of Staff for Development.8
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In his new position Leghorn became responsible for planning the Air Force’s reconnaissance needs for the next decade. He worked closely with Charles F. (Bud) Wienberg—a colleague who had followed  him  from  Wright  Field—and  Eugene  P.  Kiefer,  a  Notre  Dame-educated  aeronautical engineer who had designed reconnaissance aircraft at the Wright Air Development Center during World War II. All three of these reconnaissance experts believed that the Air Force should emphasize high-altitude photoreconnaissance.
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Underlying their advocacy of high-altitude photoreconnaissance was the belief that Soviet radars would not be able to track aircraft flying above 65,000 feet. This assumption was based on the fact that the Soviet Union used American-built radar sets that had been supplied under Lend-Lease during World War II. Although the SCR-584 (Signal Corps Radio) target-tracking radar could track targets up to 90,000 feet, its high power consumption burned out a key component quickly, so this radar was normally not turned on until an early warning radar had detected a target. The SCR-270 early warning radar could be left on for much longer periods and had a greater horizontal range (approximately 120 miles) but was limited by the curvature of the earth to a maximum altitude of 40,000 feet. As a result, Leghorn, Kiefer, and Wienberg believed that an aircraft that could ascend to 65,000 feet before entering an area being swept by the early warning radar would go undetected, because the target- tracking radars would not be activated.9
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The problem with this assumption was that the Soviet Union, unlike Britain and the United States had continued to improve radar technology after the end of World War  II. Even after evidence of improved  Soviet radar  capabilities  became  available,  however,  many advocates  of high-altitude overflight continued to believe that aircraft flying above 65,000 feet were safe from detection by Soviet radars.
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The Air Force Search for a New Reconnaissance Aircraft
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With interest in high-altitude reconnaissance growing, several Air Force agencies began to develop an  aircraft  to  conduct  such  missions.  In  September   1952,  the  Air  Research  and  Developmen Command gave the Martin Aircraft Company a contract to examine the high-altitude potential of the B-57 by modifying a single aircraft to give it long, high-lift wings and the American version of the new  Rolls-Royce  Avon-109   engine.  These  were  the  modifications  that  Richard   Leghorn  had suggested during the previous year.10
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At about the same time, another Air Force office, the Wright Air Development Command (WADC in Dayton, Ohio, was also examining ways to achieve sustained flight at high altitudes. Working with two German aeronautical experts—Woldemar Voigt and Richard Vogt—who had come to the United States after World War II, Air Force Maj. John Seaberg advocated the development of a new aircraf that would combine the high-altitude performance of the latest turbojet engines with high-efficiency wings in order to reach ultrahigh altitudes. Seaberg, an aeronautical engineer for the Chance Vought Corporation until his recall to active duty during the Korean war, was serving as assistant chief of the New Developments Office ofWADC’s Bombardment Branch.
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By March 1953, Seaberg had expanded his ideas for a high-altitude aircraft into a complete request for proposal for “an aircraft weapon system having an operational radius of 1,500 nm [nautical miles] and  capable  of  conducting  pre-  and  post-strike  reconnaissance  missions  during  daylight,  good visibility conditions.” The requirement stated that such an aircraft must have an optimum subsonic cruise speed at altitudes of 70,000 feet or higher over the target, carry a payload of 100 to 700 pounds of reconnaissance equipment, and have a crew of one.11
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The  Wright  Air  Development  Command  decided  not  to  seek  proposals  from  major  airframe manufacturers on the grounds that a smaller company would give the new project a higher priority and produce a better aircraft more quickly. In July 1953, the Bell Aircraft Corporation of Buffalo, New York, and the Fairchild Engine and Airplane Corporation of Hagerstown, Maryland, received study contracts to develop an entirely new high-altitude reconnaissance aircraft. In addition, the Glenn L. Martin  Company  of Baltimore  was  asked  to  examine  the  possibility  of  improving  the  already exceptional high-altitude performance of the B-57  Canberra. By January 1954 all three firms had submitted their proposals. Fairchild’s entry was a single-engine plane known as M- 195, which had a maximum altitude potential of 67,200 feet; Bell’s was a twin-engine craft called the Model 67 (later the X- 16), which had a maximum altitude of 69,500 feet; and Martin’s design was a big-wing version of the B-57 called the Model 294, which was to cruise at 64,000 feet. In March 1954, Seaberg and other engineers at Wright Field, having evaluated the three contending designs, recommended the adoption of both the Martin and Bell proposals. They considered Martin’s version of the B-57 an interim project that could be completed and deployed rapidly while the more advanced concept from Bell was still being developed.12
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Air Force headquarters soon approved Martin’s proposal to modify the B-57 and was very much interested in the Bell design. But word of the competition for a new reconnaissance airplane had reached  another  aircraft  manufacturer,  the  Lockheed  Aircraft  Corporation,  which  submitted  an unsolicited design.
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Lockheed had first become aware of the reconnaissance aircraft competition in the fall of 1953. John H. (Jack) Carter, who had recently retired from the Air Force to become the assistant director of Lockheed’s Advanced Development Program, was in the Pentagon on business and dropped in to see Eugene P. Kiefer, an old friend and colleague from the Air Force’s Office of Development Planning (more commonly known as AFDAP from its Air Force office symbol). Kiefer told Carter about the competition for a high-flying aircraft and expressed the opinion that the Air Force was going about the search in the wrong way by requiring the new aircraft to be suitable for both strategic and tactical reconnaissance.
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Immediately after returning to California, Carter proposed to Lockheed Vice President L. Eugene Root (previously the top civilian official in the Air Force’s Office of Development Planning) tha Lockheed also submit a design. Carter noted that the proposed aircraft would have to reach altitudes of between 65,000 and 70,000 feet and correctly forecast, “If extreme altitude performance can be realized in a practical aircraft at speeds in the vicinity of Mach 0.8, it should be capable of avoiding virtually all Russian defenses until about 1960.” Carter added, “To achieve these characteristics in an aircraft which will have a reasonably useful operational life during the period before  1960 will, of course, require very strenuous efforts and extraordinary procedures, as well as nonstandard design philosophy.”  Some  of the  “nonstandard”  design  characteristics   suggested  by  Carter   were   the elimination of landing gear, the disregard of military specifications, and the use of very low  load factors. Carter’s memorandum closed with a warning that time was of the essence: “In order that this special aircraft can have a reasonably long and useful life, it is obvious that its development must be greatly accelerated beyond that considered normal.”13
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Lockheed’s senior officials approved Carter’s proposal, and early in 1954 the corporation’s best aircraft designer—Clarence L. (Kelly) Johnson—began working on the project, then known as the CL-282 but later to become famous under its Air Force designator—the U-2. Already one of the world’s leading aeronautical  engineers, Kelly Johnson had many successful military and civilian designs to his credit, including the P-38, P-80, F-104, and Constellation. Johnson quickly came up with a radical design based upon the fuselage of the F- 104 jet fighter but incorporating a high-aspect- ratio sailplane wing. To save weight and thereby increase the aircraft’s altitude, Johnson decided to stress the airframe to only 2.5 units of gravity (g’s) instead of the military specification strength of 5.33 g’s. For the power plant he selected the General Electric J73/GE-3 nonafterburning turboje engine with 9,300 pounds of thrust (this was the same engine he had chosen for the F- 104, which had been the basis for the U-2 design).14 Many of the  CL-282’s  design features were  adapted  from gliders. Thus, the wings and tail were detachable. Instead of a conventional landing gear, Johnson proposed using two skis and a reinforced belly rib for landing—a common sailplane technique—and a jettisonable wheeled dolly for takeoff. Other features included an unpressurized cockpit and a 15- cubic-foot payload area that could accommodate 600 pounds of sensors. The CL-282’s maximum altitude would be just over 70,000 feet with a 2,000-mile range. Essentially, Kelly Johnson had designed a jet-propelled glider.15
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Early in March  1954,  Kelly  Johnson  submitted  the  CL-282  design  to  Brig.  Gen.  Bernard  A Schriever’s Office of Development Planning. Eugene Kiefer and Bud Wienberg studied the design and recommended it to General Schriever, who then asked Lockheed to submit a specific proposal. In early April,  Kelly  Johnson  presented  a  full  description  of the  CL-282  and  a  proposal  for  the construction and maintenance of 30 aircraft to a group of senior Pentagon officials that included Schriever’s superior, Lt. Gen. Donald L. Putt, Deputy Chief of Staff for Development, and Trevor N Gardner,  Special  Assistant  for  Research  and  Development  to  the   Secretary  of  the  Air  Force Afterward Kelly Johnson noted that the civilian officials were very much interested in his design but the generals were not.16
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The CL-282 design was also presented to the commander of the Strategic Air Command (SAC) Gen. Curtis E. LeMay, in early April by Eugene Kiefer, Bud Wienberg, and Burton Klein from th Office of Development Planning. According to Wienberg, General LeMay stood up halfway through the briefing, took his cigar out of his mouth, and told the briefers that, if he wanted high-altitude photographs, he would put cameras in his B-36 bombers and added that he was not interested in a plane that had no wheels or guns. The general then left the room, remarking that the whole business was a waste of his time.17
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The Lockheed CL-282
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Meanwhile,  the  CL-282  design  proceeded  through  the  Air  Force  development  channels  and reached  Major  Seaberg  at the  Wright Air  Development  Command  in mid-May.  Seaberg  and  his colleagues carefully evaluated the Lockheed submission and finally rejected it in early June. One of their main reasons for doing so was Kelly Johnson’s choice of the unproven General Electric J73 engine. The engineers at Wright Field considered the Pratt and Whitney J57 to be the most powerfu engine available, and the designs from Fairchild, Martin, and Bell all incorporated this engine. The absence of conventional landing gear was also a perceived shortcoming of the Lockheed design.18
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Another factor in the rejection of Kelly Johnson’s submission was the Air Force preference for multiengine aircraft. Air Force reconnaissance experts had gained their practical experience during World War II in multiengine bombers. In addition, aerial photography experts in the late  1940s and early  1950s  emphasized  focal  length  as  the  primary  factor  in  reconnaissance  photography  and, therefore,  preferred   large  aircraft  capable   of  accommodating  long  focal-length  cameras.   This preference reached an extreme in the early 1950s with the development of the cumbersome 240-inch Boston camera, a device  so  large that the YC-97  Boeing Stratocruiser that carried it had to be partially disassembled before the camera could be installed. Finally, there was the feeling shared by many Air Force officers that two engines are always better than one because, if one fails, there is a spare to get the aircraft back to base. In reality, however, aviation records show that single-engine aircraft  have  always  been  more  reliable  than  multiengine  planes.   Furthermore, a  high-altitude reconnaissance aircraft deep in enemy territory would have little chance of returning if one of the engines failed, forcing the aircraft to descend.19
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On 7 June 1954, Kelly Johnson received a letter from the Air Force rejecting the CL-282 proposa because  it  had  only  one  engine  and  was  too  unusual  and  because  the  Air  Force  was  already committed to the modification of the Martin B-5720 By this time, the Air Force had also selected the Bell X- 16; the formal contract calling for aircraft was signed in September. Despite the Air Force’s selection ofthe X- 16, Lockheed continued to work on the CL-282 and began seeking new sources of support for the aircraft.
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Lockheed CL-282 Supporters and the CIA
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Although the Air Force’s uniformed hierarchy had decided in favor of the Bell and Martin aircraft, some  high-level  civilian  officials  continued  to  favor  the  Lockheed  design.  The  most  prominent proponent  of the  Lockheed  proposal  was  Trevor  Gardner,  Special  Assistant  for  Research  and Development to Air Force Secretary Harold E. Talbott. Gardner had many contacts in west coas aeronautical circles because before coming to Washington he had headed the Hycon Manufacturing Company,  which  made  aerial  cameras  in  Pasadena,  California.  He  had  been  present  at  Kelly Johnson’s presentation on the CL-282 at the Pentagon in early April  1954  and believed that this design showed the most promise for reconnaissance of the Soviet Union. This belief was shared by Gardner’s  special  assistant,  Frederick  Ayer,  Jr.,  and  Garrison  Norton,  an  adviser  to  Secretary Talbott.21
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According to Norton, Gardner tried to interest SAC commander LeMay in the Lockheed aircraf because Gardner envisioned it primarily as a collector of strategic, rather than tactical, intelligence. But General LeMay had already shown that he was not interested in an unarmed aircraft. Gardner Ayer, and Norton then decided to  seek CIA support for the high-flying aircraft. At that time the Agency’s official involvement in overhead reconnaissance was limited to advising the Air Force on the problems of launching large camera-carrying balloons for reconnaissance flights over hostile territory (for the details of this program,  see chapter 2).  The Chief of the  Operations  Staff in the Office of Scientific Intelligence, Philip G.  Strong, however, served on several Air Force advisory boards and kept himself well informed on developments in reconnaissance aircraft.22
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Gardner, Norton, and Ayer met with Strong in the Pentagon on 12 May 1954, six days before the Wright Air Development Command began to evaluate the Lockheed proposal. Gardner described Kelly Johnson’s proposal and showed the drawings to Strong. After this meeting. Strong summarized his impressions ofthe Air Force’s search for a high-altitude reconnaissance aircraft:
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Proposals for special  reconnaissance  aircraft  have  been  received  in  the  Air  Staffrom Lockheed, Fairchild, and Bell … The Lockheed proposal is considered to be the best. It has been given the type designation of CL-282 and in many respects is a jet-powered glider based essentially on the Lockheed Day Fighter XF-104. It is primarily subsonic but can attain transonic speeds over the target with a consequent loss of range. With an altitude of 73,000 feet over the target it has a combat radius of 1,400 nautical miles … The  CL-282  can be manufactured mainly with XF-104 jigs  and designs … The prototype  of this plane  can  be produced within a year from the date of order. Five planes could be delivered for operations within two years.
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The Bell proposal is a more conventional aircraft having normal landing gear. As a result, its maximum altitude over target is 69,500feet and the speed and range are not as good as the Lockheed CL-282.23
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Gardner’s enthusiasm for the  CL-282 had given Strong the false impression that most Air Force officials supported the Lockheed design. In reality, the Air Force’s uniformed hierarchy was in the process of choosing the modified version of the Martin B-57 and the new Bell X- 16 to meet future reconnaissance needs.
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During their meeting with Strong, Trevor Gardner, Frederick Ayer, and Garrison Norton explained that they favored the CL-282 because it gave promise of flying higher than the other designs and because at maximum altitude its smaller radar cross section might make it invisible to existing Soviet radars. The three officials asked Strong if the CIA would be interested in such an aircraft. Strong promised to talk to the Director of Central Intelligence’s newly hired Special Assistant for Planning and Coordination, Richard M. Bissell, Jr., about possible Agency interest in the CL-282.24
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Richard Bissell had already had an active and varied career before he joined the CIA. A graduate of Groton and Yale, Bissell studied at the London School of Economics for a year and then completed a  doctorate   at  Yale  in   1939.  He  taught  economics,   first  at  Yale   and  then  from   1942  at  the Massachusetts  Institute of Technology (MIT), where he became a full professor in  1948.  During World  War  II,  Bissell  had  managed  American  shipping  as  executive  officer  of  the  Combined Shipping Adjustment Board. After the war, he served as deputy director of the Marshall Plan from 1948 until  the  end  of  1951,  when he became  a  staff member  of the  Ford  Foundation.  His  first association with the Agency came in late  1953,  when he undertook a  contract study of possible responses the United States might use against the Soviet Bloc in the event of another uprising such as the  East Berlin riots  of June  1953.  Bissell  quickly  concluded  that there was not much hope  for clandestine operations  against Bloc nations. As he remarked later:  “I know  I  emerged  from that exercise  feeling that very little  could be  done.”  This belief would  later make  Bissell  a  leading advocate of technical rather than human means of intelligence collection.25



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