Norbert Brügge, Germany Contents: Revised: 01.06.2015 R-11 (8A61) R-11M (8K11, Scud-A) R-11MU R-11M Propulsion

Total Page:16

File Type:pdf, Size:1020Kb

Norbert Brügge, Germany Contents: Revised: 01.06.2015 R-11 (8A61) R-11M (8K11, Scud-A) R-11MU R-11M Propulsion Norbert Brügge, Germany Contents: Revised: 01.06.2015 R-11 (8A61) R-11M (8K11, Scud-A) R-11MU R-11M propulsion R-17 (8K14, Scud-B) R-17M (8K14M, Scud-C) R-17 VTO R-17 propulsion Iranian Shahab-1 & -2 Iranian Qiam-1 Iraqi Al-Hussein / Al-Hijarah / Al-Abbas R-17MU (8K14MU, Scud-D) North Korean Hwasong-X Rear of a Scud-B missile without jet vanes Comparison between Scud-B and Scud-D Hwasong-5 R-17M R-17MU R-11M (Scud-A) R-17 (Scud-B) Al-Hussein-1 Al-Abbas Hwasong-6 Qiam-1 Shahab-2 (Scud-C (Scud-D Length total 10.604 m 11.164 m 10.944 m 12.264 m 13.244 m 11.166 m 11.166 m 10.500 m 12.406 m Length without control unit/ 7.441 m 7.444 m 7.444 m 8.764 m 9.740 m 7.894 m 7.894 m 7.894 m 9.134 m warhead Diameter (m) 0.88 m 0.88 m 0.88 m 0.88 m 0.88 m 0.88 m 0.88 m 0.88 m 0.88 m T-1 /AK-20F TM-185 /AK-27I TM-185 /AK-27I TM-185 /AK-27I TM-185 /AK-27I TM-185 /AK-27I TM-185 /AK-27I TM-185 /AK-27I UDMH /AK-27 Propellant Kerosene / Kerosene / Kerosene / Kerosene / Kerosene / Kerosene / Kerosene / Kerosene / Hydrazine / 80%HNO3 73%HNO3 73%HNO3 73%HNO3 73%HNO3 73%HNO3 73%HNO3 73%HNO3 73%HNO3 +27%N2O4 +20%N2O4 +27%N2O4 +27%N2O4 +27%N2O4 +27%N2O4 +27%N2O4 +27%N2O4 +27%N2O4 Mass propellant (t) 3.411 3.759 3.759 4.337 5.205 4.337 4.337 4.337 5.732 Engine S2.253 (8D511) S5.2 (9D21) S5.2 (9D21) S5.2 (9D21) S5.2 (9D21) S5.2 (9D21) S5.2 (9D21) S5.2 (9D21) Isayev Thrust s.l. (kN) 81.4 132.1 132.1 132.1 132.1 132.1 132.1 132.1 149.9 Thrust vac (kN) 94.8 146.3 146.3 146.3 146.3 146.3 146.3 146.3 165.5 Isp s.l. (Ns/kg) 2148 2285 2285 2285 2285 2285 2285 2285 2354 Isp vac Ns/kg) 2501 2530 2530 2530 2530 2530 2530 2530 2599 Burn time, nominal (sec) 90 65 65 75 90 75 75 75 90 Total vacuum impulse (MNs) 8.53 9.51 9.51 10.97 13.17 10.97 10.97 10.97 14.90 AK-27I oxidizer TM-185 fuel Concentrated Nitric Acid: 69.8 - 70.2% Polymer Distillate: 56 % (+/- 1,5 %) Di-nitrogen Tetroxide: 24 - 28% Light Oil Pyrolyse: 40 % (+/- 1 %) for the increase of the density and the resistance against the oxidation through oxygen Water: 1.3 - 2% Trikrezol: 4 % (prevents the crystallization of water) Iodium inhibitor: 0.12 -0.16% Ignition is accomplished by a hypergolic start fuel designated TG-02 "Samin" filled into the fuel line at the main fuel valve. TG-02 consists of 50 percent Tri-ethyl Amine and 50 percent Xylidiene. The propellant fed system is a turbo pump driven by a bipropellant gas generator using the main propellants. The start and shut down valves are one shot devices, actuated by pyrotechnic charges. For improving the accuracy the engine is equipped with mechanical controls for correct thrust level and mixture ratio. Tank pressurization is performed by air stored in high-pressure bottles in the missile's tail section, which are heated by the turbine exhaust gases..
Recommended publications
  • Trade Studies Towards an Australian Indigenous Space Launch System
    TRADE STUDIES TOWARDS AN AUSTRALIAN INDIGENOUS SPACE LAUNCH SYSTEM A thesis submitted for the degree of Master of Engineering by Gordon P. Briggs B.Sc. (Hons), M.Sc. (Astron) School of Engineering and Information Technology, University College, University of New South Wales, Australian Defence Force Academy January 2010 Abstract During the project Apollo moon landings of the mid 1970s the United States of America was the pre-eminent space faring nation followed closely by only the USSR. Since that time many other nations have realised the potential of spaceflight not only for immediate financial gain in areas such as communications and earth observation but also in the strategic areas of scientific discovery, industrial development and national prestige. Australia on the other hand has resolutely refused to participate by instituting its own space program. Successive Australian governments have preferred to obtain any required space hardware or services by purchasing off-the-shelf from foreign suppliers. This policy or attitude is a matter of frustration to those sections of the Australian technical community who believe that the nation should be participating in space technology. In particular the provision of an indigenous launch vehicle that would guarantee the nation independent access to the space frontier. It would therefore appear that any launch vehicle development in Australia will be left to non- government organisations to at least define the requirements for such a vehicle and to initiate development of long-lead items for such a project. It is therefore the aim of this thesis to attempt to define some of the requirements for a nascent Australian indigenous launch vehicle system.
    [Show full text]
  • Weapons of Mass Destruction (WMD) Capable Missiles and Unmanned Aerial Vehicles (Uavs)
    Order Code RS21376 Updated March 3, 2003 CRS Report for Congress Received through the CRS Web Iraq: Weapons of Mass Destruction (WMD) Capable Missiles and Unmanned Aerial Vehicles (UAVs) Andrew Feickert Analyst in National Defense Foreign Affairs, Defense, and Trade Division Summary This report addresses Iraq’s post-Gulf-War missile and UAV programs, system capabilities, and operational employment considerations. The UN has recently ordered Iraq to destroy its Al Samoud 2 missiles and associated engines which the UN claims are in violation of UN Security Council Resolutions (UNSCR) 687 and 715. Iraq is also estimated to have illegally retained up to 20 Al Hussein SCUD variant missiles and may have also attempted to extend the range of their Ababil-100 (also referred to as Al Fatah) missiles to proscribed limits. Iraq has also been accused of modifying L-29 Czech jet trainers to be used as UAVs to disseminate chemical or biological agents. This report will be updated as events warrant. Additional information is provided in CRS Issue Brief 1B92117, Iraq: Weapons, Threat, Compliance, Sanctions, and U.S. Policy and CRS Report RL31671, Iraq:UN Inspections for Weapons of Mass Destruction. Iraq’s Missile and UAV Program, 1991-1998 Since the conclusion of the Gulf War in 1991 and the imposition of UNSCR 687, United Nations Special Commission on Iraq (UNSCOM) inspectors have either supervised the destruction of, or accounted for:1 ! 817 of 819 Russian-supplied SCUD missiles; ! 19 transporter, erector, launchers (TELs); and ! 30 chemical/biological warheads. Prior to the Gulf War, Iraq experimented with a variety of ballistic missiles, most based on the proven SCUD design, with ranges from 900 to 2,500 kms.
    [Show full text]
  • Iraq Missile Chronology
    Iraq Missile Chronology 2008-2006 | 2005 | 2004 | 2003-2002 | 2001 | 2000 | 1999 1998 | 1997 | 1996 | 1995 | 1994 | 1993 | 1992 | 1991 Last update: November 2008 As of November 2008, this chronology is no longer being updated. For current developments, please see the Iraq Missile Overview. 2008-2006 29 February 2008 UNMOVIC is officially closed down as directed by UN Security Council Resolution 1762, which terminated its mandate. [Note: See NTI Chronology 29 June 2007]. —UN Security Council, "Iraq (UNMOVIC)," Security Council Report, Update Report No. 10, 26 June 2008. 25 September 2007 U.S. spokesman Rear Admiral Mark Fox claims that Iranian-supplied surface-to-air missiles, such as the Misagh 1, have been found in Iraq. The U.S. military says that these missiles have been smuggled into Iraq from Iran. Iran denies the allegation. [Note: See NTI Chronology 11 and 12 February 2007]. "Tehran blasted on Iraq Missiles," Hobart Mercury, 25 September 2007, in Lexis-Nexis Academic Universe; David C Isby, "U.S. Outlines Iranian Cross-Border Supply of Rockets and Missiles to Iraq," Jane's Missiles & Rockets, Jane's Information Group, 1 November 2007. 29 June 2007 The Security Council passes Resolution 1762 terminating the mandates of the UN Monitoring, Verification, and Inspection Commission (UNMOVIC) and the IAEA in Iraq. Resolution 1762 also requests the UN Secretary General to dispose safely of archives containing sensitive information, and to transfer any remaining UNMOVIC funds to the Development Fund for Iraq. A letter to the Security Council from the Iraqi government indicates it is committed to respecting its obligations to the nonproliferation regime.
    [Show full text]
  • Draft Work Programme
    UNITED NATIONS NATIONS UNIES UNMOVIC UNITED NATIONS MONITORING, VERIFICATION AND INSPECTION COMMISSION 17 March 2003 DRAFT WORK PROGRAMME 1. This document is being presented pursuant to operative paragraph 7 of Security Council resolution 1284 (1999), which requires the United Nations Monitoring, Verification and Inspection Commission (UNMOVIC) to submit, for approval by the Security Council, a Work Programme for the discharge of its mandate. THE RESOLUTIONS GOVERNING THE WORK OF UNMOVIC 2. Resolution 1284 (1999), which established UNMOVIC, was followed by, but not replaced by, resolution 1441 (2002). Several other resolutions also contribute to the mandate of UNMOVIC, notably, 687 (1991), 707 (1991) and 715 (1991). While the export/import mechanism is also highly relevant for the work of UNMOVIC, it is not addressed in this paper, which focuses on work in the field of disarmament and ongoing monitoring and verification. 3. In drawing up its work programme, UNMOVIC must take into account the demands placed upon it under all the relevant resolutions. Although they differ in focus and emphasis, there are no inconsistencies between them, whether in relation to tasks, powers or work methods. Page 1 of 83 4. With respect to powers, there has been over the years an aggregation of rights, most recently and most significantly through resolution 1441 (2002), which considerably strengthened the authority of the inspectors. 5. With regard to working methods, resolution 687 (1991) distinguished between inspection and ongoing monitoring and verification. The latter working method was described in the plan (S/2287/Rev.1 and S/1995/208) submitted by the United Nations Special Commission (UNSCOM) and approved by resolution 715 (1991).
    [Show full text]
  • Ballistic and Cruise Missiles of Foreign Countries
    Order Code RL30427 CRS Report for Congress Received through the CRS Web Missile Survey: Ballistic and Cruise Missiles of Foreign Countries Updated March 5, 2004 Andrew Feickert Specialist in National Defense Foreign Affairs, Defense, and Trade Division Congressional Research Service ˜ The Library of Congress Missile Survey: Ballistic and Cruise Missiles of Foreign Countries Summary This report provides a current inventory of ballistic and cruise missiles throughout the world and discusses implications for U.S. national security policy. (Note: the Defense Threat Reduction Agency’s Weapons of Mass Destruction Terms Reference Handbook defines a ballistic missile as “ a missile that is guided during powered flight and unguided during free flight when the trajectory that it follows is subject only to the external influences of gravity and atmospheric drag” and a cruise missile as “a long-range, low-flying guided missile that can be launched from air, sea, and land.”) Ballistic and cruise missile development and proliferation continue to pose a threat to United States national security interests both at home and abroad. While approximately 16 countries currently produce ballistic missiles, they have been widely proliferated to many countries - some of whom are viewed as potential adversaries of the United States. Nineteen countries produce cruise missiles which are also widely proliferated and many analysts consider cruise missile proliferation to be of more concern than that of ballistic missile proliferation, primarily due to their low threshold of use, availability and affordability, and accuracy. This report will be updated annually. With the fall of Iraq, many analysts see North Korean and Iranian missile and WMD programs as the primary “rogue nation” long-range ballistic missile threat to U.S.
    [Show full text]
  • Scuds Targeting the Port City of Dhahran Are Attached to This Letter
    This information was put together for ------- by the Nation Gulf War Resource Center (NGWRC). WWW.NGWRC.ORG ----- came to the NGWRC and asked for our help in providing information needed for his claim before the Department of Veterans Affairs (VA). He needs proof about given facts from the gulf war. The facts about the scuds targeting the port city of Dhahran are attached to this letter. You will see in the data that we was able to get from the DoD website, much as you could have done, that the was a number of scuds. It should be noted that on the night of January 17th 1991, when the first Scud was fired, the service members at the port city of Dhahran went into MOPP-4 for six or more hours. It was a known fact that the troops at the port city of Dhahran were warned of the incoming scud by a loudspeaker system. The troops was at the time, ordered to take their Pyridostigmine Bromide (PB) Pills (anti nerve agent) that had some side effects that made many veterans feel like they was exposed to gas. It should be noted that the port is at Dhahran, the same place as the veteran. This is also the same place that a scud landed and killed 28 reservists on the 25th of February. As a gulf war veteran and as the operation officer working in the Tactical Operation Center (TOC) of 4Th Bn 5Th FA, a unit of the 1st ID from Ft. Riley, KS that was in the Dhahran, I can attest to the first scud attracts.
    [Show full text]
  • Asian Ballistic Missiles and Weapons of Mass Destruction: the Impact of Missile Defense
    A Service of Leibniz-Informationszentrum econstor Wirtschaft Leibniz Information Centre Make Your Publications Visible. zbw for Economics Møller, Bjørn Working Paper Asian ballistic missiles and weapons of mass destruction: The impact of missile defense DIIS Working Paper, No. 2005:1 Provided in Cooperation with: Danish Institute for International Studies (DIIS), Copenhagen Suggested Citation: Møller, Bjørn (2005) : Asian ballistic missiles and weapons of mass destruction: The impact of missile defense, DIIS Working Paper, No. 2005:1, ISBN 8776050602, Danish Institute for International Studies (DIIS), Copenhagen This Version is available at: http://hdl.handle.net/10419/84508 Standard-Nutzungsbedingungen: Terms of use: Die Dokumente auf EconStor dürfen zu eigenen wissenschaftlichen Documents in EconStor may be saved and copied for your Zwecken und zum Privatgebrauch gespeichert und kopiert werden. personal and scholarly purposes. Sie dürfen die Dokumente nicht für öffentliche oder kommerzielle You are not to copy documents for public or commercial Zwecke vervielfältigen, öffentlich ausstellen, öffentlich zugänglich purposes, to exhibit the documents publicly, to make them machen, vertreiben oder anderweitig nutzen. publicly available on the internet, or to distribute or otherwise use the documents in public. Sofern die Verfasser die Dokumente unter Open-Content-Lizenzen (insbesondere CC-Lizenzen) zur Verfügung gestellt haben sollten, If the documents have been made available under an Open gelten abweichend von diesen Nutzungsbedingungen
    [Show full text]
  • Andrei Frolov IRAN's DELIVERY SYSTEMS CAPABILITIES 1
    Andrei Frolov IRAN'S DELIVERY SYSTEMS CAPABILITIES 1 In late 2006 the United States announced plans to deploy elements of an antimissile defense system in Eastern Europe. The White House's official justification for the plans was the need to defend Europe against Iran and North Koreastates that possess or intend to possess nuclear weapons. The deployment of U.S. missile interceptors in Poland and radars in the Czech Republic has already resulted in a confrontation between the West and Russia. Russians believe that the U.S. arguments are groundless, and recently proposed the joint use of the Sovietbuilt radar in Azerbaijan. But does Iran really have the capability to create nuclear weapon delivery systems such as ballistic missiles, bombers, and submarines? The examples of official nuclear weapon states, as well as India and Pakistan, indicate that nuclear weapons did not appear in a vacuum, but together with means of their delivery. Moreover, in many respects it was these delivery systems that determined the mass and dimensions of the warheads as well as their possible applications. Furthermore, in all of the above countries, with the possible exception of Pakistan, the first delivery system, chronolog ANALYSES ically, was aviation, and only later were groundbased and seabased missiles developed. Before testing their first usable nuclear bombs, all of these countries already had aircraft in series production that could be employed at the tactical and, partially, the intercontinental level (at least via the “oneway ticket” tactic, like the Soviet Air Force’s Tu4 and M4 bombers). The examples of North Korea and, partially, Iran (if one assumes that the Islamic Republic of Iran does in fact intend to develop nuclear weapons) are of particular interest here.
    [Show full text]
  • The State of the Missile Technology Control Regime
    University of Pennsylvania ScholarlyCommons Summer Program for Undergraduate Research (SPUR) Wharton Undergraduate Research 2017 The State Of The Missile Technology Control Regime Tyler J. Knox University of Pennsylvania Follow this and additional works at: https://repository.upenn.edu/spur Part of the Business Commons, and the International Relations Commons Recommended Citation Knox, T. J. (2017). "The State Of The Missile Technology Control Regime," Summer Program for Undergraduate Research (SPUR). Available at https://repository.upenn.edu/spur/22 This paper is posted at ScholarlyCommons. https://repository.upenn.edu/spur/22 For more information, please contact [email protected]. The State Of The Missile Technology Control Regime Abstract The 1987 Missile Technology Control Regime is a multilateral ballistic missile export regime of members (“Partner States”) who have pledged to strengthen international non-proliferation efforts through export controls. Has the MTCR succeeded in restricting ballistic missile proliferation? This paper seeks to answer this question, and explore if the Missile Technology Control Regime is in need of reform after three decades by drawing upon a compiled data set on all ballistic missiles possessed by the world’s nations as of May 2017. By evaluating missile diffusion over time on a global and regional basis, this paper concludes that the MTCR has succeeded in slowing down the rate of proliferation and restricting the new missile powers to missiles of relatively basic sophistication. However, the Missile Technology Control Regime must be strengthened, considering the omission of the Middle East from the Regime, the ability of missile transfers to catalyze domestic development, and the subversion of the MTCR by its own Partner States.
    [Show full text]
  • Download (PDF)
    N° 01/2014 recherches & documents aôut 2014 The military Strategic Rationale of Turkey’s T-Loramids project and the Eurosam offer DR. CAN KASAPOGLU WWW . FRSTRATEGIE . ORG Édité et diffusé par la Fondation pour la Recherche Stratégique 4 bis rue des Pâtures – 75016 PARIS ISSN : 1966-5156 ISBN : 978-2-911101-82-3 EAN : 9782911101823 WWW.FRSTRATEGIE.ORG 4 BIS RUE DES PÂTURES 75 016 PARIS TÉL. 01 43 13 77 77 FAX 01 43 13 77 78 SIRET 394 095 533 00052 TVA FR74 394 095 533 CODE APE 7220Z FONDATION RECONNUE D'UTILITÉ PUBLIQUE – DÉCRET DU 26 FÉVRIER 1993 TABLE OF CONTENTS INTRODUCTION ....................................................................................................................... 5 ROOTS OF TURKEY’S VULNERABILITY: 1991 GULF WAR AND SADDAM HUSSEIN’S ARMAGEDDON ARSENAL ......................................................................................................... 6 TURKEY’S 1998 GUNBOAT DIPLOMACY AGAINST SYRIA: THE ONLY EXCEPTION AGAINST STRATEGIC WEAPONS ............................................................................................................ 8 PICKING UP WHERE WE LEFT OFF: STILL NO NATIONAL MISSILE DEFENSE ASSETS IN 2003 .................................................................................................................................11 THE 2010S: THIS TIME IT IS THE SYRIAN SCUDS BUT STILL NATO ASSETS NEEDED TO PROTECT TURKEY .............................................................................................................13 TURKEY’S MILITARY STRATEGIC POSTURE IN THE
    [Show full text]
  • The Scope of Foreign Assistance to North Korea's Missile Program
    SCIENCE & GLOBAL SECURITY 2019, VOL. 27, NO. 1, 29–72 https://doi.org/10.1080/08929882.2019.1613805 The Scope of Foreign Assistance to North Korea’s Missile Program Markus Schiller ST Analytics, Munich, Germany ABSTRACT ARTICLE HISTORY There is evidence that North Korea’s ballistic missile program Received 6 June 2018 benefited from support from the Soviet Union until its col- Accepted 27 February 2019 lapse and from Russia thereafter. Along with transfers of mis- sile systems and rocket components, it appears that Russian engineers directly supported the program in North Korea. Analysis of missile launches, imagery, design solutions, and technology suggest that Pyongyang’s recent missile program may have continued to have external support despite a pause in the 2000s. This assistance may have enabled the progress in North Korea’s missile program leading to tests of an inter- continental range ballistic missile in 2017. Introduction Under the rule of Kim Jong Un, the North Korean missile program experienced a major increase in total and annual missile launches (see Figure 1). There were reports of new launches every two weeks, and new missile types were introduced on a regular basis. The missiles ranged from advanced Scud variants and large solid-fueled missiles to Intercontinental Ballistic Missiles (ICBMs) that were capable of reaching the United States and U.S. territories.1 Combined with static firing tests of several different new engines, these developments underlie the widely held belief that North Korea always had a very capable indigenous missile industry.2 This image of North Korea as a nation of rocket scientists was fueled by its initial suc- cess in “quickly reverse engineering” foreign missiles in the 1980s, followed by rapid and flawless improvement of these missiles into advanced types with improved performance.
    [Show full text]
  • FEASIBILITY of THIRD WORLD ADVANCED BALLISTIC and CRUISE MISSILE THREAT Volume 1: Long Range Ballistic Missile Threat
    FEASIBILITY OF THIRD WORLD ADVANCED BALLISTIC AND CRUISE MISSILE THREAT Volume 1: Long Range Ballistic Missile Threat The Systems Assessment Group of the NDIA Strike, Land Attack and Air Defense Committee began this study using aerospace industry analysis tools and judgments to address the feasibility of a Third World country to develop or acquire a long range ballistic missile. Volume 1 of the study reports the assessment of the feasibility of the long range ballistic missile threat. A subsequent Volume 2 report will cover the cruise missile threat. The analyses performed by industry under the broad title of “Feasibility of Third World Advanced Ballistic & Cruise Missile Threat” incorporate information only from unclassified sources. This study examines the potential growth in ballistic missile range that could occur as a result of the unprecedented proliferation of ballistic missile technology to Third World countries. The study focuses on the question of feasibility rather than traditional intelligence methods which are based primarily upon observed data. The study also considers that Long Range Ballistic Missiles (LRBMs) might be developed by Third World countries for coercive purposes wherein a small number of weapons with reduced performance may be sufficient to achieve certain political objectives. Toward that end, unconventional design processes are considered as a means to significantly reduce the development time required to achieve such limited capability. Our focus on LRBMs does not ignore the growing threat to US allies and theater assets posed by shorter range ballistic missiles. The study recognizes a number of Third World countries who also have a missile development infrastructure capable of developing new intermediate range ballistic missiles.
    [Show full text]