为减少交通工程建设对青藏高原生态环境的影响,分析了青藏高原地区降雨特性,制定了3个地区的暴雨公式;用青藏高原典型土壤进行了裸土、纯草皮、三维网草皮的边坡冲刷试验,获得了两种草皮的抗冲刷流速,并与西安黄土的抗冲刷流速进行对照;考虑坡面微地形的影响,将坡面水流概化为抛物线形浅沟流,通过现场实测确定了相关参数;计算了西宁、玉树、拉萨、德令哈4个地区的边坡水流参数,并结合室内冲刷试验结果,提出适用于4个地区的生态边坡防护方案。
In order to decrease the impact of traffic engineering construction on the ecological environment of Qinghai-Tibetan Plateau, we have worked out the rainstorm intensity formula of three cities through analysis of the rainstorm characteristics of Qinghai-Tibetan Plateau area. Slope erosion tests of pure turf and three dimensional mesh cushion grass are performed, respectively with typical soil of the Qinghai-Tibetan Plateau. Thus we have gained two kinds of turf scouring velocities, which are compared with that of Xi'an loess. Considering the influence of slope micro topography, the slope flow is generalized as parabolic shallow channeling, and the relevant parameters are determined through field measurement.. In addition, combind with indoor scouring test's results an ecological slope protection scheme for the four regions is proposed, with calculation of slope flow parameters of Xining, Yushu, Lhasa, Delingha.
[1] 于伯华, 吕昌河. 青藏高原高寒区生态脆弱性评价[J]. 地理研究, 2012, 30(12):2289-2295. Yu Bohua, Lü Changhe. Assessment of ecological vulnerability on the Tibetan Plateau[J]. Geographical Research. 2012, 30(12):2289-2295.
[2] 周跃. 欧美坡面生态工程原理及应用的发展现状[J]. 土壤侵蚀与水土保持学报, 1999, 1(5):79-85. Zhou Yue. Development status and application of the principle of slope engineering in europe[J]. Soil Erosion and Water Conservation, 1999, 1(5):79-85.
[3] 钟春欣, 张玮, 王树仁. 三维植被网加筋草皮坡面土壤侵蚀试验研究[J]. 河海大学学报(自然科学版), 2005, 35(3):258-261. Zhong Chunxin, Zhang Wei, Wang Shuren. Dimensional vegetation net reinforced turf slope soil erosion experimental research[J]. Hohai University:Natural Science, 2005, 35(3):258-261.
[4] 水利部水文局, 南京水利科学研究院. 中国暴雨统计参数图集[M]. 北京:中国水利水电出版社, 2006. Ministry of Water Resources Hydrology Bureau, Nanjing Hydraulic Research Institute. China storm statistic parameters portfolio[M]. Beijing:China Water Conservancy and Hydropower Press, 2006.
[5] 胡亮, 杨松, 李耀东. 青藏高原及其下游地区降水厚度季、日变化的气候特征分析[J]. 大气科学. 2010, 34(2):387-398. Hu Liang, Yang Song, Li Yaodong. Climatic characteristics of the Tibetan Plateau and its downstream precipitation thickness season, diurnal variation[J]. Atmospheric Science, 2010, 34(2):387-398.
[6] 北京市政工程设计总院. 给水排水设计手册(第五册)城镇排水[M]. 北京:中国建筑工业出版社, 2004. Beijing Municipal Engineering Design Institute. Water supply and drainage design manual (Volume V) urban drainage[M]. Beijing:China Building Industry Press, 2004.
[7] 张莎莎, 杨晓华, 李凌姜. 黄土地区道路陡边坡植被多样性生态防护措施[J]. 公路交通科技, 2013, 30(6):153-157. Zhang Shasha, Yang Xiaohua, Li Lingjiang. Loess area roads and steep slope vegetation diversity in ecological protection measures[J]. Highway and Transportation Research, 2013, 30(6):153-157.
[8] 赵云, 岑国平, 李会恩, 等. 不同边坡形式防冲刷试验研究[J]. 科学技术与工程, 2013, 13(20):6015-6019. Zhao Yun, Cen Guoping, Li Huien, et al. Test research on different forms of anti-erosion[J]. Science Technology and Engineering, 2013, 13(20):6015-6019.
[9] 岑国平. 机场排水设计[M]. 北京:人民交通出版社, 2002:170-334. Cen Guoping. Airport drainage design[M]. Beijing:China Communications Press, 2002:170-334.