• 제목/요약/키워드: Curvature of Railway

검색결과 69건 처리시간 0.026초

부산 지하철 소음도 조사 및 평가 (Investigation and Evaluation of Noise Level of the Busan Subway)

  • 이장명;정진국;정진석
    • 대한환경공학회지
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    • 제33권4호
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    • pp.243-250
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    • 2011
  • 부산지하철 3개 노선에 대한 소음도 조사 및 비교 평가가 이루어 졌다. 차량이 역을 다 빠져 나간 순간부터 차량이 다음 역에 도착할 때까지를 기준으로 하여 차량 내부에서의 평균 소음값을 측정하였다. 또한 차량이 역사 도착 시 측정과 차량이 역사 출발 시 측정으로 나누어서 측정하였다. 주간시간대(오전9시~오후6시)와 야간시간대(오후6시~오후10시)로 구분하여 측정하였으나 주 야간 차이가 크지 않아 주 야간의 차이를 두지 않고 전체적으로 평균을 취했다. 2010년 5월과 7월 두 차례 부산지하철의 차량실내 소음도를 측정하여 실험에 대한 재현성을 검정하였다. 노선별 스크린 도어 효과, 도상조건, 열차차종 및 노선별 곡률반경 변화에 따른 소음도 차이가 조사되어 졌다. 부산지하철 3개 노선 중 2호선의 소음도가 가장 높았으며 이에 대한 방안도 강구 되었다. 스크린도어가 미설치된 역이 설치된 역에 비하여 소음도가 약 10 dB(A) 정도 높았으며 S 자형의 급곡선부에서 소음도가 높음이 확인되었다.

공항철도 전동차의 승차감 측정 (A Ride Quality Measurement of Rolling Stock used in Airport Railway)

  • 전창성;류준형;백광선;윤성철;김명룡;김원경
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 춘계학술대회 논문집
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    • pp.1546-1549
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    • 2007
  • A ride quality measurement was carried out for commuter and express train used in airport railway. Lateral and vertical directional average ride quality level is higher than that of longitudinal direction. Because express train is faster than commuter train, the average ride quality level of express train is higher compared to that of commuter train. The average ride quality level of commuter train is between 'good comfortable($100{\sim}105dB$)' and 'very good comfortable(below 100dB)'. The average ride quality level of express train is between 'not comfortable($105{\sim}110dB$)' and 'good comfortable($100{\sim}105dB$)'. In spite of the scheduled speed is higher(more than 70km/h for commuter train, more than 80km/h for express train) than other lines, the ride quality of airport railway train is good. The reason is that there is little gradient in rail and the radius of curvature is larger compared to that of other lines.

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강관 코아 합성 중공 기둥의 연성 거동 연구 (Ductility of Circular Hollow Columns with Internal Steel Tube)

  • 강영종;한승룡;박남회
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2002년도 춘계학술대회 논문집
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    • pp.183-188
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    • 2002
  • In locations where the cost or concrete is relatively high, or in situations where the weight or concrete members is to be kept to a minimum, it may be economical to use hollow reinforced concrete vertical members. Hollow reinforced concrete columns with low axial load, moderate longitudinal steel percentage, and a reasonably thick wall were found to perform in a ductile manner at the flexural strength, similar to solid columns. However, hollow reinforced concrete columns with high axial load, high longitudinal steel percentage, and a thin wall were found to behave in a brittle manner at the flexural strength, since the neutral axis is forced to occur away from the inside face of the tube towards the section centroid and, as a result, crushing of concrete occurs near the unconfined inside face of the section. If, however, a steel tube is placed near the inside face of a circular hollow column, the column can be expected not to fail in a brittle manner by disintegration of the concrete in the compression zone. Design recommendation and example by moment-curvature analysis program for curvature ductility are presented. Theoretical moment-curvature analysis for reinforced concrete columns, indicating the available flexural strength and ductility, can be conducted providing the stress-strain relation for the concrete and steel are known. In this paper, a unified stress-stain model for confined concrete by Mander is developed for members with circular sections.

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회전하는 두꺼운 링의 고유진동 해석을 위한 모델링 (Modeling for the Natural Vibration Analysis of a Rotating Thick Ring)

  • 김창부;김보연
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 추계학술대회 논문집
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    • pp.107-114
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    • 2007
  • In this paper, the equations of motion by which the natural vibration of rotating thick ring can be analyzed accurately are presented. These equations are derived from the theory of finite deformation and the principle of virtual work. The effects of variation in curvature across the ring cross-section can be considered in these equations. The ring models are called as thick ring model and thin ring model respectively as the effects of variation in curvature are considered or neglected. The radial displacement of ring which is rotating at constant angular velocity is determined by a non-linear equation derived from the principle of virtual work. The equations of the in-plane and out-of-plane vibrations at disturbed state are also formulated from the principle of virtual work. They can be expressed as the combination of the radial displacement at the steady state and the disturbed displacements about the steady state. The natural vibrations of rings with different thickness are analyzed by using the presented ring models and 3-dimensional finite element method to verify accuracy of the presented equations of motion. Its results are compared and discussed.

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Assessment of multi-physical field effects on nonlinear static stability behavior of nanoshells based on a numerical approach

  • Zhanlei Wang;Ye Chen
    • Steel and Composite Structures
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    • 제46권4호
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    • pp.513-523
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    • 2023
  • Buckling and post-buckling behaviors of geometrically perfect double-curvature shells made from smart composites have been investigated. The shell has been supposed to be exposed to transverse mechanical loading and magneto-electro-elastic (MEE) coupling. The composite shell has been made of two constituents which are piezoelectric and magnetic ingredients. Thus, the elastic properties might be variable based upon the percentages of the constituents. Incorporating small scale impacts in regard to nonlocal theory leads to the establishment of the governing equations for the double-curvature nanoshell. Such nanoshell stability will be shown to be affected by composite ingredients. More focus has been paid to the effects of small scale factor, electric voltage and magnetic intensity on stability curves of the nanoshell.

바람이 고속전철의 동적 안전성에 미치는 영향 분석 (Analysis of the Effect of Wind on the Dynamic Behavior of High Speed Train)

  • 김영국;박찬경;박태원;배대성
    • 한국소음진동공학회논문집
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    • 제11권8호
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    • pp.349-356
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    • 2001
  • The dynamic behavior of high speed train is very Important because the railway should be safe and Is satisfied tilth the rode comfort of passengers. The train is composed of many suspension components. such as 1st springs, 1st dampers, 2nd springs and 2nd dampers, that have an influence on the dynamic characteristics of high speed train. Also, the wheel/rail shapes, the track conditions and geometry and many environmental factors, such as rain, snow and wind. affect the dynamic behavior of high speed train. This paper reviews the effect of wind and track conditions on the dynamic behavior of high speed train. The VAMPIRE program Is used for this simulation. The result of simulation shows that the high speed train should not be operated when the wind velocity is beyond 34.5 m/sec.

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틸팅차량 주행에 따른 기존선 곡선부 궤도의 성능 평가 (Performance evaluation of Conventional Curved Track by Tilting Trains)

  • 엄기영;양신추;신승권;엄주환
    • 한국철도학회논문집
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    • 제8권6호
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    • pp.550-558
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    • 2005
  • The track performance evaluation in curves of conventional line subjected to loading condition caused by tilting trains was carried out. And the correlations between train speed and track alignment was reviewed. The parameters of track alignment were determined by field investigation of all curves in conventional line. It was founded that the pressure of the rail did exceed the allowable stress when the tilting train speed was over 96km/hr in radius of 300m. As the radius of curvature is smaller, applied force on the track becomes larger in the curved track without regard to laying of the continuos welded rail. On the while, the change of applied force on the track corresponding to the change of the cant is not so large.

철근콘크리트 및 강섬유 철근콘크리트보의 에너지감쇄 (Damping of RC and SFRC Beams)

  • 강보순
    • 한국철도학회논문집
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    • 제8권2호
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    • pp.122-127
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    • 2005
  • In this paper, damping behavior of steel fiber reinforced concrete(SFRC) beams by experimental and numerical method is discussed. Because of its improved ability to dissipate energy, SFRC has a better damping behavior than that of reinforced concrete(RC). Damping behavior is influenced by longitudinal reinforcement ratio, volume md type of steel fiber, strength of concrete and the stress level. Damping in the SFRC beams has been evaluated from dynamic experimental test data at various levels of cracked states in the beams. A FEM program(TICAL) has been developed based on the relationships between curvature and damping. It is observed far SFRC beams with 0.44$\%$ of tensile reinforcement steel that approximate 5$\%$ to 35$\%$ was relatively increased in the damping ratio generally depending on the load level.

일반 EMU열차와 틸팅 EMU열차의 운전시간 비교: 중앙선 청량리~영주 구간 (Run-time comparison of Tilting train with Non-tilting train on the Jungang-line between Cheongnyangni and Youngju)

  • 노학래
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 정기총회 및 추계학술대회 논문집
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    • pp.1227-1234
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    • 2011
  • Korea is a mountainous country, with as much as 70% of the area is covered by hills and mountains. This geography places constraints on the minimum radius of curvature for the rail network. It was expected that the speed of trains could be enhanced on the existing railway network without a huge investment in infrastructure by using tilting trains. The development of tilting trains in Korea started in 2001 as research & development project. A 6-car prototype test tilting train, called the Tilting Train eXpress (TTX), was built in December 2006 and experimental trials began in 2007. TTX has distributed power, is designed to run at 200 km/h, and has a planned service speed of 180 km/h. In this paper, we first describe the performance of tilting train, and then present the estimated running times, and the time saving compared with today's conventional trains and non-tilting trains, based on the Jungang line. So the time saving could be separated into two effects by higher track top-speed and tilting devices.

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Parametric Study of Thermal Stability on Continuous Welded Rail

  • Choi, Dong-Ho;Na, Ho-Sung
    • International Journal of Railway
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    • 제3권4호
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    • pp.126-133
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    • 2010
  • The thermal buckling analysis of curved continuous welded rail (CWR) is studied for the lateral buckling prevention. This study includes a thermal buckling theory which accounts for both thermal and vehicle loading effects in the evaluation of track stability. The parameters include rail size, track lateral resistance, track longitudinal and torsional stiffnesses, initial misalignment amplitude and wavelength, track curvature, tie-ballast friction coefficient and truck center spacing. Parametric studies are performed to evaluate the effects of the individual parameters on the upper and lower critical buckling temperatures. The results show that the upper critical buckling temperature is highly affected by the uplift due to vehicle loads. This study provides a guideline for the improvement of stability for dynamic buckling in curved CWR track.

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