

浏览全部资源
扫码关注微信
Published:2016
移动端阅览
[1]于献彬,陈晓清,赵万玉,陈剑刚,李云.透水型拦挡坝排泄孔开口参数对坝体应力场影响规律研究[J].防灾减灾工程学报,2016,36(06):1015-1025.
于献彬, 陈晓清, 赵万玉, et al. Influence of the Perforated Parameters of Permeable Dam Drain Hole on the Dam Stress Field[J]. 2016, 36(6): 1015-1025.
[1]于献彬,陈晓清,赵万玉,陈剑刚,李云.透水型拦挡坝排泄孔开口参数对坝体应力场影响规律研究[J].防灾减灾工程学报,2016,36(06):1015-1025. DOI: 10.13409/j.cnki.jdpme.2016.06.024.
于献彬, 陈晓清, 赵万玉, et al. Influence of the Perforated Parameters of Permeable Dam Drain Hole on the Dam Stress Field[J]. 2016, 36(6): 1015-1025. DOI: 10.13409/j.cnki.jdpme.2016.06.024.
基于混凝土塑性损伤模型
建立了透水型拦挡坝三维数值计算模型
根据单因素理论
通过数值计算
揭示了拦挡坝排泄孔及坝趾附近最大拉应力及Mises等效应力随排泄孔高宽比、开孔数量、开孔率及开孔位置的变化规律;并对排泄孔不同开孔率条件下拦挡坝承受的极限冲击荷载进行了研究。结果表明:(1)最大拉应力随高宽比增大先减小后增大
随开孔率及开孔数目的增大基本保持不变
随垂直距离的增大而减小。Mises等效应力随高宽比的增大先减小后增大
随垂直距离的增大而减小
随着开孔率的增大而增大
随开孔数目的增大基本保持不变;(2)开孔会降低坝体抗拉强度且随着开孔率的提高
拦挡坝坝体承受的泥石流冲击力最大值呈降低趋势。该研究成果可为透水型拦挡坝结构设计与优化提供理论指导。
Based on concrete plastic-damage model
a three-dimensional numerical calculation model of permeable dam is established.According to the theory of single factor
the chang rules with the depth-width ratio
number
opening ratio and position of drain holes for the maximum tensile stress and Mises equivalent stress near the permeable dam drain hole and dam toe are revealed through numerical simulation.Finally
how to withstand the ultimate impacting load for a permeable dam is studied.The results show that the maximum tensile stress decreases firstly
and then increases with the increasing of depth-width ratio
remains little changing with the increasing of opening ratio and number of holes and decreases with the increasing of vertical distance;Mises equivalent stress decreases firstly
and then increases with the increasing of depthwidth ratio
decreases with the increasing of vertical distance
increases with the increasing of opening ratio
and remains little changing with the increasing of the number of holes;drain hole reduces the tensile strength of the permeable dam and with the increasing of opening ratio
the maximum impact force of debris flow on the permeable dam will reduce.Research results can provide a theoretical guidance on structural design and optimization for permeable dams.
窗口坝拦截泥石流性能试验研究 [J]. 刘曙亮,游勇,柳金峰,赵彦波,林雪平. 长江科学院院报 . 2015(08)
泥石流窗口坝闭塞类型及其临界条件实验研究 [J]. 赵彦波,游勇,柳金峰,林雪平,刘曙亮. 防灾减灾工程学报 . 2015(02)
泥石流拦砂坝溢流口过流能力实验研究 [J]. 林雪平,游勇,柳金峰,赵彦波. 自然灾害学报 . 2015(01)
混凝土损伤塑性模型的参数分析 [J]. 彭小婕,于安林,方有珍. 苏州科技学院学报(工程技术版) . 2010(03)
泥石流拦挡坝优化设计 [J]. 李冠奇,魏鸿,谷明成,李朝安,陈宪麦. 地质灾害与环境保护 . 2009(02)
泥石流缝隙坝对龙头泥砂体积浓度变化影响试验研究 [J]. 吕娟,韩文兵. 水土保持研究 . 2009(02)
混凝土损伤塑性模型应用研究 [J]. 雷拓,钱江,刘成清. 结构工程师 . 2008(02)
钢制格栅坝拦截泥石流效果试验研究 [J]. 詹敏. 水土保持应用技术 . 2007(04)
Efficiency of Slit Dam Prevention against Non-Viscous Debris Flow [J]. HAN Wenbing 1, 2 , OU Guoqiang 1 1. Institute of Mountain Hazards and Environment, Chinese Academy of Sciences, Chengdu 610041, Sichuan, China; 2. Graduate University of Chinese Academy of Sciences, Beijing 100049, China. Wuhan University Journal of Natural Sciences . 2006(04)
梳子坝切口深度对淤砂形态影响的试验研究 [J]. 韩文兵,欧国强. 水土保持研究 . 2005(06)
梳子坝淤砂形态特征试验研究 [J]. 韩文兵,欧国强. 防灾减灾工程学报 . 2005(03)
水石流梳子型切口坝拦砂性能试验研究 [J]. 韩文兵,欧国强. 水土保持研究 . 2004(03)
梳子坝对土石流之防治效率 [J]. 连惠邦,柴钫武,柯志宗. 水土保持研究 . 2001(01)
泥石流梁式格栅坝拦砂性能试验研究 [J]. 游勇. 水土保持学报 . 2001(01)
DEBRIS FLOW CONTROL BY USING SLIT DAMS [J]. Hui-Pang LIEN and Fang-Wu TSAI (1 Associate Professor, Department of Hydraulic Engineering, Feng Chia University, Taichung, Taiwan 407, China z Associate Professor, Department of Mechanic Engineering, Chung Chou College of Technology and Commerce, Changhu. International Journal of Sediment Research . 2000(04)
关于缝隙坝缝部流态的研究 [J]. 水山高久,小野田忠弘,阿部彦七,小田晃,党福江. 水土保持科技情报 . 1998(04)
关于上部狭窄式格栅坝的研究 [J]. 水野秀明,水山高久,李晓华. 水土保持科技情报 . 1998(03)
缝隙坝、护坦建设的现状 [J]. 大久保骏,阿布综平,王丽. 水土保持科技情报 . 1998(01)
透水型拦挡坝在泥石流防治中的应用 [J]. 李德基. 中国地质灾害与防治学报 . 1997(04)
狭缝拦砂坝的流量系数与淤砂形状 [J]. 水山高久,阿部宗平,矢岛重美,韩文林. 水土保持科技情报 . 1994(04)
拦沙坝对泥石流调控机制的试验研究 [D]. 贾世涛. 西南交通大学 2011
中国泥石流[M]. 商务印书馆 , 唐邦兴主编, 2000
Slit Dam Design for Debris Flow Mitigation [J] . Peggy A. Johnson,Richard H. McCuen. Journal of Hydraulic Engineering . 1989 (9)
0
Views
115
下载量
3
CSCD
Publicity Resources
Related Articles
Related Author
Related Institution
苏公网安备32010202012147号