• Title/Summary/Keyword: 고속 EMU

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Vibration Analysis of High-Speed EMU Car Body Using Equivalent Stiffness and Shell Element (등가강성과 Shell 요소를 이용한 분산형 고속전철의 차체 진동 해석)

  • Baek, Seung-Guk;Shin, Bum-Sik;Choi, Jin-Hwan;Lee, Sang-Won;Choi, Yeon-Sun;Koo, Ja-Choon
    • Proceedings of the KSR Conference
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    • 2009.05b
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    • pp.217-222
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    • 2009
  • High-speed EMU under development vibrates more than a articulated high-speed train since power units are attached on each vehicle and railway vehicle. In this study, anisotropic equivalent stiffness of a aluminum extrusion plate were calculated to know and predict vibration characteristic of High-speed EMU under development. Eigen frequencies and modal shape of high speed train vehicle were calculated. And vibration generated was predicted at each position of vehicle when vehicle was operating.

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A Study on the Application of Design Factor for Design Identity of High speed EMU (동력 분산형 고속전철의 아이덴티티 확립을 위한 디자인 요소 적용에 관한 연구)

  • Woo, Jung-Hwan;Yang, Seung-Yun;Seok, Jae-Heuck;Park, Kyong-Jin;Han, Jung-Wan
    • Proceedings of the KSR Conference
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    • 2009.05b
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    • pp.277-282
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    • 2009
  • This research present final Proto-type design of Korean High speed EMU identity establishment. To making Proto-type design; Frist step is extracting design factor which can makes final image of Proto-type. And last, Apply it to the Original-form which was presented by last research. This research is for take one's own identity of korean High speed EMU, and makes originality of design for korean rail-road culture.

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A Study on the Techniques to Evaluate Carbody Accelerations after a Train Collision (충돌 후 열차의 차체 가속도 평가 기법 연구)

  • Kim, Joon-Woo;Koo, Jeong-Seo
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.20 no.5
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    • pp.477-485
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    • 2010
  • In this study, we suggested several approaches to evaluate the collision acceleration of a carbody under the article 16 of the Korean rolling stock safety regulations. There are various methods to evaluate the rigid body accelerations such as the displacement comparison method by double integration of filtered acceleration data, the velocity comparison method by direct integration of filtered acceleration data, and the analysis method of a velocity-time curve. We compared these methods one another using the 1D dynamic simulation model of Korean high-speed EMU composed of nonlinear springs or bars, dampers, and masses. From the simulation results, the velocity-time curve analysis method and the displacement comparison method are recommended to filter high frequency oscillations and evaluate the maximum and average accelerations of a carbody after a train collision.

The Structural Analysis and Experimental Verification for the Next Generation High Speed EMU (분산형 고속전철의 하중조건에 따른 정적 하중시험 평가)

  • Choi, Jeong-Yong;Jeong, Won-Wha;Park, Geun-Soo;Woo, Kwan-Je
    • Proceedings of the KSR Conference
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    • 2011.05a
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    • pp.307-313
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    • 2011
  • Hyundai Rotem Company has designed and manufactured the next generation high speed EMU bodyshell (M3-car). Korean Railway Safety Law specifies the loads vehicle bodies shall be capable of withstanding, identifies what material data shall be used and presents the principles to be used for design verification by analysis. Therefore, in order to fulfill the structural requirements, Hyundai Rotem Company has carried out Finite Element Analysis (FEA) and static load test to verify whether the carbody structure has enough strength to withstand the loads specified by Korean Railway Safety Law. This research contains the results obtained by the FE analysis and static load test. The FE analysis is carried out using NX I-DEAS 6.1 and specially designed test jigs and equipment are used for the load tests.

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Winding Disposition to Minimize the Output Interference of Transformers for the High-Speed EMU (동력 분산형 고속철도용 변압기의 출력 간섭현상을 저감시키기 위한 권선 배치 방법)

  • Park, Byoung-Gun;Ahn, Sung-Kuk;Hyun, Dong-Seok
    • Proceedings of the KSR Conference
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    • 2010.06a
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    • pp.1873-1877
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    • 2010
  • In the high-speed EMU, the modularized traction converter produces the significant harmonic currents caused from the switching behavior of a power converter. These harmonic currents bring the interference among the traction equipment. One way to minimize the interference is to design the secondary windings of a power transformer decoupled magnetically as possible. This paper presents a magnetic field analysis on a winding disposition to clarify an impact on magnetic decoupling between secondary windings, under a limited height of a train. Two winding dispositions for a single-phase shell-type transformer are constructed and simulated by a three-dimensional finite elements method (FEM) model. Two different winding dispositions are constructed and simulated by three-dimensional FEM model using Maxwell3D.

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Study on the Noise Reduction Techniques of the High-Speed EMU (동력분산형 고속철도의 실내외 소음저감기술 연구)

  • Hong, Yun-H.;Kim, Jeung-T.;Kim, Jung-Soo
    • Proceedings of the KSR Conference
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    • 2008.06a
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    • pp.1148-1153
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    • 2008
  • Noise pollution from a high speed train has been a serious social issue nowadays. Especially when a train speed exceeds 350 km/hr, an aerodynamic noise level has been known to be increased drastically. In this paper, explained were the studies on the noise reduction and engineering approaches to estimate and analyze influences of noise. Based on this study, it is estimated to apply results to development of trains and expected to accomplish futuristic technology by devising noise prediction of high speed EMU and measures to reduce noise on a design phase.

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Derivation of the Standard Design Guidelines for Crashworthiness of the High-Speed EMU (동력분산형 고속전철의 충돌안전도 설계 가이드라인 도출)

  • Kim, Geo-Young;Cho, Hyun-Jik;Koo, Jeong-Seo
    • Proceedings of the KSR Conference
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    • 2008.06a
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    • pp.772-779
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    • 2008
  • Through this study, standard design guidelines for the high speed EMU have been derived to meet the crashworthiness requirements of the Korean rollingstock safety regulation. The crashworthiness regulation requires some performance requirements for two heavy collision accident scenarios; a train-to-train collision at the relative speed of 36 kph, and a collision against a standard deformable obstacle of 15 ton at 110 kph. The complete train set will be composed of 2TC-6M with 13 ton axle load, different from KTX with the power car of 17 ton axle load. Using theoretical and numerical analyses, some crashworthy design guidelines were derived in terms of mean crush forces and energy absorptions for main crushable structures and devices. The derived design guidelines were evaluated and improved using one dimensional spring-mass dynamic simulations. It is shown from the simulation results that the suggested design guidelines can easily satisfy the domestic crashworthiness requirements.

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