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STUDY ON MECHANISM OF COMPRESSION WAVE INDUCED BY A HIGH-SPEED TRAIN ENTERING A TUNNEL WITH HOLES ON HOOD

机译:高速列车在隧道进入隧道隧道引起的压缩波机制

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A cell-centered finite volume scheme for numerical integrations of Navier-Stokes equations for a three-dimensional unsteady viscous compressible isentropic flow has been presented here to simulate the compression wave produced by a train passing through a tunnel with an entrance hood.The numerical procedure is based on pre-conditioned second-order accurate backward difference in time,and the relative motion between the train and tunnel is treated with a sliding mesh technique.The paper studies on the effect of aperture opening ratio on the compression wave and compression gradient.The result indicates a hood with aperture openings can effectively decrease the maximum pressure and pressure gradient.No matter how long the hood is,the larger aperture opening ratio is,the more the compression grade will be.The longer the hood is,the more increasing ratio of the compression grade is.The maximum of compression grade is increasing with the length of hood.Once the length of hood is fixed,the length of aperture openings for entrance of tunnel has limit effects on the maximum pressure gradient.
机译:本文介绍了用于三维非稳态可压缩等式熵流的Navier-Stokes方程的数值集成的细胞中心有限体积方案,以模拟通过隧道的火车和入口罩产生的压缩波。数值程序基于预处理的二阶准确落后差差,以及火车和隧道之间的相对运动用滑动网格技术处理。论孔径开口比对压缩波和压缩梯度的影响。结果表明具有孔径开口的罩可以有效地降低最大压力和压力梯度。发动机罩是多长时间的,较大的孔径开口比是,压缩等级越多。敞篷越长,越来越越来越多压缩等级的比率是。压缩等级的最大值随着罩的长度而增加。罩的长度是固定的,L隧道入口入口的孔径开口的歌词对最大压力梯度有限制。

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