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Wind-sand flow simulation and radius optimization of highway embankment under different vertical curve radius
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作者 LI Liangying LI Qi +2 位作者 WANG Xu xin guowei WANG Zhenqiang 《Journal of Mountain Science》 SCIE CSCD 2024年第8期2533-2546,共14页
It is of great practical value to explore the correlation between the vertical curve radius of desert highway and the increase of sand accumulation in local lines,and to select the appropriate vertical curve radius fo... It is of great practical value to explore the correlation between the vertical curve radius of desert highway and the increase of sand accumulation in local lines,and to select the appropriate vertical curve radius for reducing the risk of sand accumulation.In this study,three-dimensional models of desert highway embankments with different vertical curve radii were constructed,and Fluent software was used to simulate the wind-sand flow field and sand accumulation distribution of vertical curve embankments.The results show that:(1)Along the direction of the road,the concave and the convex vertical curve embankments have the effect of collecting and diverging the wind-sand flow,respectively.When the radius of the concave vertical curve is 3000 m,5000 m,8000 m,10000 m and 20000 m,the wind velocity in the middle of the vertical curve is 31.76%,22.58%,10.78%,10.53%and 10.44%,higher than that at both ends.When the radius of the convex vertical curve is 6500 m,8000 m,10000 m,20000 m and 30000 m,the wind velocity at both ends of the vertical curve is 14.06%,9.99%,6.14%,3.22%and 2.41%,higher than that in the middle.The diversion effect also decreases with the increase of the radius.(2)The conductivity of the concave and convex vertical curve embankments with different radii is greater than 1,which is the sediment transport roadbed.The conductivity increases with the increase of radius and gradually tends to be stable.When the radius of the concave and convex vertical curves reaches 8000 m and 20000 m respectively,the phenomenon of sand accumulation is no longer serious.Under the same radius condition,the concave vertical curve embankment is more prone to sand accumulation than the convex one.(3)Considering the strength of the collection and diversion of the vertical curve embankment with different radii,and the sand accumulation of the vertical curve embankment in the desert section of Wuma Expressway,the radius of the concave vertical curve is not less than 8000 m,and the radius of the convex vertical curve is not less than 20000 m,which can effectively reduce the sand accumulation of the vertical curve embankment.In the desert highway area,the research results of this paper can provide reference for the design of vertical curve to ensure the safe operation of desert highway. 展开更多
关键词 Highway engineering Vertical curve Numerical simulation Embankment wind-sand flow Radius optimization
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铁路沿线不同沙害区域机械防沙措施设计研究 被引量:2
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作者 李选民 辛国伟 +2 位作者 宋彦宏 张洁 黄宁 《铁道勘察》 2023年第4期82-89,共8页
为解决沙区铁路所面临的风沙危害,设计相应的机械防沙措施,以拟建鄂托克前旗—上海庙铁路(简称“鄂上铁路”)为研究背景,在测量区域风速及输沙量基础上,对满足防沙需要的沙障设置进行三维数值模拟研究,并辅以风洞实验验证。研究表明,沙... 为解决沙区铁路所面临的风沙危害,设计相应的机械防沙措施,以拟建鄂托克前旗—上海庙铁路(简称“鄂上铁路”)为研究背景,在测量区域风速及输沙量基础上,对满足防沙需要的沙障设置进行三维数值模拟研究,并辅以风洞实验验证。研究表明,沙害中等区域流沙量较少,沙障拦截效率高,单道沙障和草方格搭配使用可满足防沙需要;沙害严重区域流沙量较多,单道沙障防护效率降低,双道沙障和草方格搭配使用方可满足防沙需要。研究表明:(1)鄂上铁路沙害中等区域,设置单道30%孔隙率沙障和10 m草方格后其防护效益达60%,可满足此区域防沙需要;(2)鄂上铁路沙害严重区域,设置双排沙障并加设10 m草方格后其防护效益达62%,可满足防沙需要;(3)沙害严重区域双排沙障之间的合理间距为10H(H为沙障高),草方格与双排沙障的合理间距为15H。研究结果表明,实际布设沙障时,防沙效益受多种因素影响,可适当增加草方格设置宽度,增大防沙效益设计余量,尽可能减少风沙对线路的影响。 展开更多
关键词 鄂上铁路 路基 机械沙障 数值计算 风沙 防沙效益
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大风区铁路沿线挡风墙积沙机理及优化措施的风洞实验研究 被引量:12
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作者 辛国伟 黄宁 张洁 《力学学报》 EI CSCD 北大核心 2020年第3期635-644,共10页
位于兰州至新疆的兰新二线是世界上首条穿越大风区的高速铁路,途径著名的烟墩风区、百里风区、三十里风区及达坂城风区,风区段铁路里程长达462.4 km,占新疆段线路总长的65.1%,大风对铁路的运营、养护和运输造成很大危害.为了降低大风对... 位于兰州至新疆的兰新二线是世界上首条穿越大风区的高速铁路,途径著名的烟墩风区、百里风区、三十里风区及达坂城风区,风区段铁路里程长达462.4 km,占新疆段线路总长的65.1%,大风对铁路的运营、养护和运输造成很大危害.为了降低大风对通行列车的危害,兰新铁路沿线设置了大量挡风墙.挡风墙发挥作用的同时,也带来了铁路沿线的积沙问题.为了解决这一工程实践的现实问题,本文提出了在现有挡风墙背风侧的不同位置处,设立第二道挡墙以减弱铁路积沙的治理思路,并开展了对应条件下对现有单道挡风墙、以及在现有单道挡风墙背风侧坡顶处和坡脚处设置第二道挡墙,共计3种情景的风洞模拟实验,发现设置第二道挡墙后距轨道线路高0.1 m处的沙粒水平速度、数密度、输沙通量及沉积率较无第二道挡墙时明显减少,介于8%~12%,51%~69%,20%~73%以及26%~38%,而且在现有单道挡风墙背风侧坡顶部增设第二道挡风墙的效果更好.因此,本文的研究成果有助于优化大风区已有铁路沿线、城镇等防沙治沙工程措施. 展开更多
关键词 大风 铁路 挡风墙 积沙 风洞实验
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