• Title/Summary/Keyword: TACM

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Effectiveness Analysis for a Lightweight Torpedo Considering Evasive Maneuvering and TACM of a Target (표적 회피기동과 어뢰음향대항체계를 고려한 경어뢰의 효과도 분석)

  • Pak, Jung-Min;Ku, Bon-Hwa;Lee, Young-Hyun;Ryu, Dong-Gi;Hong, Woo-Young;Ko, Han-Seok;Lim, Myo-Taeg
    • Journal of the Korea Society for Simulation
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    • v.20 no.4
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    • pp.1-11
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    • 2011
  • In the development phase of a torpedo, the effectiveness analysis is carried out to predict the performance and to learn how to use the torpedo. In order to obtain reliable data, it is required to model the tactical situation closely to the actual one. Because the submarine is a target of a lightweight torpedo, the anti-torpedo countermeasures of a submarine such as evasive maneuvering and TACM (Torpedo Acoustic Counter Measure) should be modeled in detail. In this paper, the evasive maneuvering is modeled reflecting the movement characteristics of the submarine. Furthermore various TACMs such as a floating-type decoy, a self-propelled decoy and jammers are also modeled. Then, effectiveness of a lightweight torpedo is measured and analyzed using the simulation program which is developed through the above modeling procedure.

A Study on Improvement of Submarine Torpedo Acoustic Counter Measure Launcher System Safety Device Performance (잠수함용 어뢰기만기 발사체계 안전장치 작동성능 향상에 관한 연구)

  • Chang, Ho-Seong;Seo, Dae-Su;Lee, Gyeong-Chan;Lee, Jong-Gwan;Jo, Byeong-Gi;Kim, Joong-Bae
    • Journal of Korean Society for Quality Management
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    • v.46 no.3
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    • pp.411-424
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    • 2018
  • Purpose: The purpose of this study is to improve submarine TACM launcher system safety device performance. Methods: In this study, EPLD(Electrically Programmable Logic Device) control and time sharing method to the safety device actuator motor and discrete signal processor in launch control panel were used to resolve unusual performance of safety system. Results: The result of this study are as follows; First, sporadic stopping of safety device actuator motor due to insufficient In-Rush current was resolved. Second, repeat of safety device condition as lock & release due to chattering for motor activating was resolved. Third, simultaneous release function for safety device actuator was available. Conclusion: The unusual performance of function for submarine TACM launcher system was overcame by applying EPLD control and time sharing method. The suggestions were proved by performance test in the pressure chamber. The results of this study enhanced survivability of ${\bigcirc}{\bigcirc}{\bigcirc}$ class submarine from enemy torpedo.

Potential Application of Environmental Tracer in Hydrogeochemistry Using Sorption Properties (환경 추적자의 흡착 특성을 이용한 수리지화학적 활용 가능성 고찰)

  • Choung, Sungwook;Chang, Seeun;Kim, Minkyung;Kim, Sungpyo;Um, Wooyong
    • Journal of Soil and Groundwater Environment
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    • v.17 no.6
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    • pp.59-68
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    • 2012
  • This study provided sorption properties of chlorofluorocarbons (CFCs), and elucidated potential application of CFC sorption data in hydrogeochemistry. Prior sorption studies were reviewed for hydrophobic organic compounds similar to the CFCs, because there were only few CFC sorption studies. The CFCs are regarded as relatively conservative chemicals in groundwater environments based on their moderate hydrophobicity. However, thermally altered carbonaceous matter (TACM) can significantly increase sorption capacity and nonlinearity for hydrophobic organic compounds such as CFCs, compared to general soil organic matter. CFC sorption behavior are close to the sorption for reviewed organic chemicals. Therefore, the CFC sorption data can be used for determining hydrogeochemical properties and predicting transport of organic contaminants in TACM-containing aquifer environments.

Torpedo defense system research using HMS(Hull Mount Sonar) of PCC(Patrol Combat Corvette) (초계함용 HMS(Hull Mount Sonar)를 이용한 어뢰방어시스템 연구)

  • Kim, Hee-Earn;Kim, Young-Kil
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.16 no.11
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    • pp.2569-2574
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    • 2012
  • HMS(Hull Mount Sonar) equipment mounted on PCC(Patrol Combat Corvette) is suitably designed for active mode, and the specific character of sensor or system is not appropriate for the frequency range to detect a torpedo. In this article, in order to implement the function of detecting torpedoes with HMS of existing PCC, I will analyze the feature of input signals each PCCs and design a circuit to compensate reversely for the input signal in certain frequency. And also, I will suggest the most adequate torpedo defense system suitable for the special operating environment and the characteristic of naval vessels, implementing functions such as AGC of input signal and fixing the frequency range of different input signals per different warships.

The Study on the Effectiveness of an Anti-Submarine Defense Plan According to the Disposition of Surface Ships (수상함의 배치에 따른 대잠 방어계획 효과도 연구)

  • Yu, Chan-Woo
    • Journal of the Korea Institute of Military Science and Technology
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    • v.14 no.4
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    • pp.572-578
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    • 2011
  • In this paper, the result of study on the effectiveness of anti-submarine defense plan according to the disposition of surface ships has been proposed. The surface ship carries a hull mounted sonar(HMS) as a underwater sensor and a torpedo acoustic counter measure(TACM) as a soft-kill weapon against torpedo attacks from the enemy. Nowadays these underwater systems have been combined into a integrated anti-submarine warfare combat system. And in the real anti-submarine operation environment, several surface ships cooperate for executing ASW plans. Considering these ASW systems and the ASW environment, the models of underwater systems mounted on an surface ship and the a general model of anti-submarine defense plan are proposed. And we designed a scenario for conducting simulations to evaluate the ASW plan according to the variation of the range and the relative angle between surface ships and a capital ship. The simulation results show the effectiveness of ASW plan depends on the formation of surface ships and a capital ship.