• Title/Summary/Keyword: TGV

Search Result 100, Processing Time 0.022 seconds

Collision Analysis of Full Rake TGV-K for crashworthy design (고속전철 TGV-K 전체 차량에 대한 충돌안전도 해석 연구)

  • 구정서;송달호
    • Proceedings of the KSR Conference
    • /
    • 1998.05a
    • /
    • pp.361-368
    • /
    • 1998
  • Described in this paper is the result of a study on collision analysis of TGV-K using 1-dimensional model for crashworthy design. Crashworthy design of the front end is very important because majority of the impact energy (more than 70%) is absorbed by the crush of the front end when the train is collided with an obstacle like a tank lorry. Guideline for the crashworthy design can be described from the collision analysis of the whole train using a 1-dimensional model. Since the headstock of TGV-K is not designed in a crashworthy point of view, a conceptual design of the headstock to improve crashworthiness is suggested and evaluated using 1-dimensional collision analysis. The suggested design, which adopts an energy absorber and a crashworthy headstock, shows a good behaviour on the accident scenario of SNCF (collision at 110 km/hr against a movable rigid mass of 15 ton).

  • PDF

A Study on Performance of TGV-K Current Collection System for the Speed-up (속도 향상을 위한 고속전철 TGV-K 집전시스템의 성능에 관한 연구)

  • Hur, S.;Kyung, J.H.;Han, H.S.;Song, D.H.
    • Proceedings of the KSR Conference
    • /
    • 1998.05a
    • /
    • pp.533-539
    • /
    • 1998
  • Described in this paper are the dynamic model and the dynamic performance of catenary-pantograph system for TGV-K(maximum operating speed of 300km/hr). Dynamic simulations showed that the system satisfies the performance criteria such as contact loss ratio, contact force and lift-off of the contact wire. It is also shown by the simulations that the dynamic behavior and contact performance of the system at the operating speed of 350km/hr are found unacceptable. Design parameters of the catenary-pantograph system should be optimized for the speed-up of the TGV-K.

  • PDF

2-Dimensional Analysis of Full Rake TGV-K on Crashworthiness (고속전철 TGV-K 전체 차량의 2차원 충돌해석)

  • 구정서;송달호
    • Proceedings of the KSR Conference
    • /
    • 1998.11a
    • /
    • pp.545-552
    • /
    • 1998
  • A study on collision analysis of TGV-K using a 2-dimensional model is described to evaluate its crashworthiness. Two-dimensional analysis gives good information on overriding behaviour and impact forces applied to interconnecting devices such as side buffers, ball & socket joints, hooks, pins, and fingers. Since the headstock of TGV-K is not designed in a crashworthy point of view, its conceptual design fur KHST(Korean High Speed Train), under development, is suggested to improve crashworthiness. The suggested design, which adopts an energy absorber and a crashworthy headstock, is compared with the conventional headstock on dynamic behaviour to the vertical direction under the accident scenario of SNCF (collision at 110km/h against a movable rigid mass of 15 ton). It is concluded that the design modification make little difference in vertical motion. To evaluate validation of the 2-dimensional model, the results fur longitudinal motion is compared with those of 1-dimemsional one. It is found that the two results are in good agreements.

  • PDF

고속전철의 제어시스템

  • 김양모;김영진
    • 전기의세계
    • /
    • v.38 no.6
    • /
    • pp.58-64
    • /
    • 1989
  • 본고에서는 고속철도중 전기철도에 촛점을 맞춰 고속전철의 일반적 제어방식에 대해 논하고 또한 세계의 고속전철중 대표적 예인 프랑스의 TGV, 일본의 신간선, 서독의 ICE의 주회로에 대해 소개하기로 하고 특히 실제로 영업운행중인 TGV와 신간선의 가감속특성과 집전방식에 대하여 비교하고자 한다.

  • PDF

Building n Domain-Specific French-Korean Lexicon

  • N, Aesun-Yoo
    • Proceedings of the Korean Society for Language and Information Conference
    • /
    • 2002.02a
    • /
    • pp.465-474
    • /
    • 2002
  • Korean government has adopted the French TGV as a high-speed transportation system and the first service is scheduled at the end of 2003. TGV-relevant documents are consisted of huge volumes, of which over than 76% has been translated in English. A large part of the English version is, however, incomprehensible without referring to the original French version. The goal of this paper is to demonstrate how DiET 2.5, a lexicon builder, makes it possible to build with ease domain-specific terminology lexicon that may contain multimedia and multilingual data with multi-layered logical information. We believe our wok shows an important step in enlarging the language scope and the development of electronic lexica, and in providing the flexibility of defining any type of the DTD and the interconnectivity among collaborators. As an application of DiET 2.5, we would like to build a TGV-relevant lexicon in the near future.

  • PDF

Power Conversion Unit for Propulsion System of the High Speed Train (고속전철 추진시스템의 전력변환장치)

  • 이병송;변윤섭;백광선
    • Journal of the Korean Society for Railway
    • /
    • v.2 no.2
    • /
    • pp.39-45
    • /
    • 1999
  • This paper presents the current-fed inverter of a TGV-K traction system with thyristor switches using phase control and commutation techniques. The current-fed inverters have two modes of operation which consist of forced commutation and natural commutation. In forced commutation mode, at speed of less than 120km/h, commutation is forced by means of the commutation capacitors and the thyristors. Above 120km/h, the thyristors operate in natural commutation mode. according to the voltages between phases of the motors. In this paper. the power conversion theory of the TGV-K traction system and the control principle of the converter and current-fed inverter are discussed.

  • PDF

The question at issue of connector wire in High Speed Railway Catenary System of France (프랑스 고속철도 전차선로 시스템에서 균압선의 문제점)

  • 안영훈
    • Proceedings of the KSR Conference
    • /
    • 2000.11a
    • /
    • pp.636-651
    • /
    • 2000
  • In these days, SNCF replace the connector wire (M-T type) with a dropper has a equivalent role and function of the one in general lines of TGV, and change the connector wire (T-T-M-M-T-T, T-T-M-M-T type, etc) into a New one has more flexible cable in parallel lines (air section air joint, etc) of TGV. The Connector wire has many problems according to a flow of excessive circulation current (or traction current) and a sudden rise of temperature on catenary when electric locomotive is running in high speed. To solve the question at issue of the connector wire in high speed railway catenary system of Fiance, SNCF return their operating experience in TGV lines to design and execution of catenary system Therefore, we have to deal with the question in design and execution of catenary system for kyoungbu HSR line because we will spend a lot of time and more money for maintenance than for construction of that.

  • PDF

Noise Prediction and Design of Soundproof Facilities for the High Speed Train (고속열차(TGV) 주행시 연변에서의 소음예측 및 방음시설설계)

  • ;J. P. Clairbois
    • Journal of KSNVE
    • /
    • v.9 no.6
    • /
    • pp.1106-1115
    • /
    • 1999
  • This paper sums up the study of the soundproof facilities (noise barriers) to be placed on the test track section within the Seoul-Pusan H.S.T. project. The objective of this study is to determine optimum design of soundproof including height, length, location, sound absorbing materials for test track(chonan-taejon). This paper shows the model to design the shape and materials of noise barrier for high speed trains(TGV, ICE, ect). The design of soundproof facilities is to be conducted by MITHRA for the prediction of noise impact of the TGV and for optimising noise barriers in order to reduce the noise generated by high speed trains. A number of computer simulations are carried out in order to determine the specification of noise barrier on test track.

  • PDF

Design of Impact Energy Absorber for High Speed railway Vehicles (고속전철용 충격흡수장치의 설계)

  • 허승진;이종현;구정서
    • Proceedings of the KSR Conference
    • /
    • 1998.05a
    • /
    • pp.377-384
    • /
    • 1998
  • The crushable front part of the conventional TGV is composed of 3 energy absorption zones; retractable coupler, protective headstock and honeycomb structure. This frontal part must absorb about 80% of the energy that should be done in a cra shworthy design. The conventional TGV can absorb 2MJ impact energy by the frontal end, but 5MJ is the design target for energy absorption in the next generation TGV. To accomplish this design goal, a new concept of design is necessary for energy absorbing components. In this paper, the design concept of the tube expansion energy absorber will be proposed and analyzed. The crash analysis of the energy absorber are performed by comparing the value of the theoretical equation wi th the simulation calculated from the commercial nonlinear FE-Code ‘PAM-CRASH’ S/W.

  • PDF

The Scenary Design for the Service car of High Speed Train (고속전철 부속실 풍경 디자인)

  • 한송이;이선영;최혁수;이병종;정경렬
    • Proceedings of the Korea Society of Design Studies Conference
    • /
    • 2000.11a
    • /
    • pp.84-85
    • /
    • 2000
  • G7 고속전철개발 산업에서 계획된 부속실은 경부 고속전철(K-TGV)의 부속실을 그대로 사용하는 것으로서 좁은 통로와 획일적 공간, 불필요한 공간에 의한 승객 편의시설의 결여되었기에, 이의 수정보완이 요구되었다. 아래의 사진들은 K-TGV의 부속실 모습이다. (중략)

  • PDF