交通运输系统工程与信息
交通運輸繫統工程與信息
교통운수계통공정여신식
JOURNAL OF COMMUNICATION AND TRANSPORTATION SYSTEMS ENGINEERING AND INFORMATION
2014年
5期
126-132
,共7页
吴奇兵%陈峰%刘欧阳%方纪平%李小红
吳奇兵%陳峰%劉歐暘%方紀平%李小紅
오기병%진봉%류구양%방기평%리소홍
城市交通%拥挤力模型%社会力%乘客空间%心理舒适度%颗粒流
城市交通%擁擠力模型%社會力%乘客空間%心理舒適度%顆粒流
성시교통%옹제력모형%사회력%승객공간%심리서괄도%과립류
urban traffic%crowding force model%social force%passenger space%psychological comfort%particle follow
地铁车厢拥挤直接影响乘客的乘车舒适度。本文根据“人体空间气泡”的概念,引入地铁车厢内乘客心理舒适度,结合乘客感知空间舒适性调查,建立乘客空间理论模型,并以此得到基于空间舒适性的立席密度评价标准。基于现有行人模型,借鉴社会力模型中人与人之间的排斥力,定义“广义拥挤力”,建立地铁车厢乘客“拥挤力”量化模型。以北京地铁4号线为研究对象,结合实地调研得到的车厢内乘客密度分布规律,应用PFC2D离散元软件以力的形式来模拟乘客空间舒适度状态。结果表明,要使80%乘客的空间舒适度等级在舒适以上,则合理密度应该在4-5人/m2之间,为制定合理立席密度标准提供参考。
地鐵車廂擁擠直接影響乘客的乘車舒適度。本文根據“人體空間氣泡”的概唸,引入地鐵車廂內乘客心理舒適度,結閤乘客感知空間舒適性調查,建立乘客空間理論模型,併以此得到基于空間舒適性的立席密度評價標準。基于現有行人模型,藉鑒社會力模型中人與人之間的排斥力,定義“廣義擁擠力”,建立地鐵車廂乘客“擁擠力”量化模型。以北京地鐵4號線為研究對象,結閤實地調研得到的車廂內乘客密度分佈規律,應用PFC2D離散元軟件以力的形式來模擬乘客空間舒適度狀態。結果錶明,要使80%乘客的空間舒適度等級在舒適以上,則閤理密度應該在4-5人/m2之間,為製定閤理立席密度標準提供參攷。
지철차상옹제직접영향승객적승차서괄도。본문근거“인체공간기포”적개념,인입지철차상내승객심리서괄도,결합승객감지공간서괄성조사,건립승객공간이론모형,병이차득도기우공간서괄성적립석밀도평개표준。기우현유행인모형,차감사회력모형중인여인지간적배척력,정의“엄의옹제력”,건입지철차상승객“옹제력”양화모형。이북경지철4호선위연구대상,결합실지조연득도적차상내승객밀도분포규률,응용PFC2D리산원연건이력적형식래모의승객공간서괄도상태。결과표명,요사80%승객적공간서괄도등급재서괄이상,칙합리밀도응해재4-5인/m2지간,위제정합리립석밀도표준제공삼고。
Passengers’comfort declines when passengers are in a crowded subway carriage. According to the concept of body space bubble and the psychological comfort of passengers in the subway carriage, with the investigation of passengers’perceptive space comfort, the theory model of passenger space is established in this paper, and then the standing passenger density evaluation criteria based on space comfort is obtained. Based on the existing pedestrian model, a generalized crowding force is defined by learning the repulsion in the social force model, and a passenger crowding force model in subway carriage is established. Beijing Metro Line 4 is selected for case study. Combined with the passenger density distribution law by the spot investigation, the discrete element software of PFC2D is used to simulate passengers’space comfort by force modality. The results show that the reasonable standing passenger density should be between 4-5 person/m2 when the space comfort grade of 80%of passengers is above comfortable, and the results can provide reference for setting the standard of standing passenger density.