铁道科学与工程学报
鐵道科學與工程學報
철도과학여공정학보
JOURNAL OF RAILWAY SCIENCE AND ENGINEERING
2015年
4期
755-761
,共7页
贾永兴%罗禄林%梅元贵%吴明
賈永興%囉祿林%梅元貴%吳明
가영흥%라록림%매원귀%오명
瞬态摩擦%初始压缩波%高速铁路%隧道%CRH380A
瞬態摩抆%初始壓縮波%高速鐵路%隧道%CRH380A
순태마찰%초시압축파%고속철로%수도%CRH380A
transient friction%initial compression waves%high -speed railway%tunnel%CRH380A
高速列车车头驶入隧道产生初始压缩波,其传播到隧道出口向外辐射引起微压波现象,危害周围环境。而隧道壁面摩擦是影响初始压缩波洞内传播的重要因素,从而影响微压波的强度。采用考虑瞬态摩擦的一维可压缩非定常不等熵流动模型研究初始压缩波洞内的传播过程。研究瞬态摩擦对 CRH380A 驶入隧道引起的初始压缩波传播的影响,给出了不同传播距离处瞬态摩擦的影响特性,获得了不同阻塞比及不同速度等级下瞬态摩擦对压缩波压力变化和压力梯度的影响特性。得出的研究结果可为今后正确考虑一维流动模型中的瞬态摩擦项提供依据。
高速列車車頭駛入隧道產生初始壓縮波,其傳播到隧道齣口嚮外輻射引起微壓波現象,危害週圍環境。而隧道壁麵摩抆是影響初始壓縮波洞內傳播的重要因素,從而影響微壓波的彊度。採用攷慮瞬態摩抆的一維可壓縮非定常不等熵流動模型研究初始壓縮波洞內的傳播過程。研究瞬態摩抆對 CRH380A 駛入隧道引起的初始壓縮波傳播的影響,給齣瞭不同傳播距離處瞬態摩抆的影響特性,穫得瞭不同阻塞比及不同速度等級下瞬態摩抆對壓縮波壓力變化和壓力梯度的影響特性。得齣的研究結果可為今後正確攷慮一維流動模型中的瞬態摩抆項提供依據。
고속열차차두사입수도산생초시압축파,기전파도수도출구향외복사인기미압파현상,위해주위배경。이수도벽면마찰시영향초시압축파동내전파적중요인소,종이영향미압파적강도。채용고필순태마찰적일유가압축비정상불등적류동모형연구초시압축파동내적전파과정。연구순태마찰대 CRH380A 사입수도인기적초시압축파전파적영향,급출료불동전파거리처순태마찰적영향특성,획득료불동조새비급불동속도등급하순태마찰대압축파압력변화화압력제도적영향특성。득출적연구결과가위금후정학고필일유류동모형중적순태마찰항제공의거。
Compression wave is generated when a high -speed train enters the tunnel portal.There may be envi-ronment problem when the micro -pressure wave radiated subsequently at the exit portal.The friction of the tunnel wall is the primary factor which affects the propagation of the initial compression waves.The change rate of pres-sure of the compression waves and the strength of the compression wave arrived at the exit portal are affected actu-ally.With the one -dimensional compressible unsteady non -homentropic flow model,the characteristics of the propagation of the initial compression wave caused by a CRH380A entering a tunnel was studied rapidly through a 1D code,in which the transient friction was considered.And its effects at different locations were shown.The effect of transient friction on pressure change and its ratio at various blockage ratio and operation speed were stud-ied.The effect of the transient friction in simulating the propagation of initial compression waves was studied qualita-tively and quantitatively.It is helpful for the future usage of the transient friction in the one -dimensional flow model.