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Wind tunnel test on the effect of metal net fences on sand flux in a Gobi Desert, China 被引量:16
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作者 WANG Tao QU Jianjun +2 位作者 ling yuquan XIE Shengbo XIAO Jianhua 《Journal of Arid Land》 SCIE CSCD 2017年第6期888-899,共12页
The Lanzhou-Xinjiang High-speed Railway runs through an expansive windy area in a Gobi Desert, and sand-blocking fences were built to protect the railway from destruction by wind-blown sand. However, the shielding eff... The Lanzhou-Xinjiang High-speed Railway runs through an expansive windy area in a Gobi Desert, and sand-blocking fences were built to protect the railway from destruction by wind-blown sand. However, the shielding effect of the sand-blocking fence is below the expectation. In this study, effects of metal net fences with porosities of 0.5 and 0.7 were tested in a wind tunnel to determine the effectiveness of the employed two kinds of fences in reducing wind velocity and restraining wind-blown sand. Specifically, the horizontal wind velocities and sediment flux densities above the gravel surface were measured under different free-stream wind velocities for the following conditions: no fence at all, single fence with a porosity of 0.5, single fence with a porosity of 0.7, double fences with a porosity of 0.5, and double fences with a porosity of 0.7. Experimental results showed that the horizontal wind velocity was more significantly decreased by the fence with a porosity of 0.5, especially for the double fences. The horizontal wind velocity decreased approximately 65% at a distance of 3.25 m(i.e., 13 H, where H denotes the fence height) downwind the double fences, and no reverse flow or vortex was observed on the leeward side. The sediment flux density decreased exponentially with height above the gravel surface downwind in all tested fences. The reduction percentage of total sediment flux density was higher for the fence with a porosity of 0.5 than for the fence with a porosity of 0.7, especially for the double fences. Furthermore, the decreasing percentage of total sediment flux density decreased with increasing free-stream wind velocity. The results suggest that compared with metal net fence with a porosity of 0.7, the metal net fence with a porosity of 0.5 is more effective for controlling wind-blown sand in the expansive windy area where the Lanzhou-Xinjiang High-speed Railway runs through. 展开更多
关键词 wind-blown sand wind tunnel experiment porous fence flow field sediment flux density Lanzhou-Xinjiang High-speed Railway Gobi Desert
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我国风沙防治工程研究现状及发展趋势 被引量:30
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作者 屈建军 凌裕泉 +3 位作者 刘宝军 陈广庭 王涛 董治宝 《地球科学进展》 CAS CSCD 北大核心 2019年第3期225-231,共7页
对风沙工程学概念和范畴进行了讨论,初步回顾了我国风沙工程学的发展过程。根据区域环境特征将我国风沙工程研究分为基于沙漠环境的重大工程风沙危害防治研究和其他特征环境区重大工程风沙危害防治研究2个部分。其中,基于沙漠环境的重... 对风沙工程学概念和范畴进行了讨论,初步回顾了我国风沙工程学的发展过程。根据区域环境特征将我国风沙工程研究分为基于沙漠环境的重大工程风沙危害防治研究和其他特征环境区重大工程风沙危害防治研究2个部分。其中,基于沙漠环境的重大工程风沙危害防治研究又可划分为4个阶段,其他特征环境重大工程的风沙危害防治研究主要集中在热带海岸、青藏高原及干旱区戈壁等区域。研究认为,我国重大风沙防治工程的发展趋势可概括为:(1)风沙工程防治体系原理的揭示;(2)重大风沙工程环境效应评价;(3)防沙工程从单纯防沙功能向经济生态型防护体系转变;(4)防沙材料装配式和施工工艺装备化的高效率、高质量快速治理技术。 展开更多
关键词 风沙灾害 防沙工程 生物固沙 防沙新材料
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