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基于低影响开发的校园雨水控制及效益分析 被引量:3
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作者 汪星 戎贵文 +2 位作者 孙双科 郑铁刚 胡良宇 《排灌机械工程学报》 CSCD 北大核心 2021年第12期1223-1229,共7页
以安徽理工大学为研究对象,应用4种低影响开发(LID)方案(植草沟、下沉式绿地、雨水罐和植草沟-下沉式绿地-雨水罐组合)构建雨洪管理模型(SWMM),模拟不同雨水重现期下各种LID方案的水文和水质性能,并评价了经济效益.结果表明:植草沟的径... 以安徽理工大学为研究对象,应用4种低影响开发(LID)方案(植草沟、下沉式绿地、雨水罐和植草沟-下沉式绿地-雨水罐组合)构建雨洪管理模型(SWMM),模拟不同雨水重现期下各种LID方案的水文和水质性能,并评价了经济效益.结果表明:植草沟的径流削减效率最好,可延迟流量峰现时间,且能有效地削减污染负荷;除雨水罐外,另外3种LID实践方案具有良好的环境效益;从成本效益上分析,下沉式绿地和组合LID实践方案的污染物控制效果较好,但其单位削减率成本高,植草沟对污染物控制效果不理想,但其具有最低的单位削减率;若想取得较好的污染物控制效果,则需要投入更大的成本,可以采用下沉式绿地或组合LID实践方案,下沉式绿地或组合LID实践方案不仅能有效削减峰值流量,缓解城市排水管网负荷,且对污染物的削减效果较好.可为中国校园中LID实践的应用决策提供理论支持. 展开更多
关键词 校园雨水径流 低影响开发 雨洪管理模型 水文水质特性 经济效益
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Assessment of potential impacts to surface and subsurface water bodies due to longwall mining 被引量:7
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作者 Christopher Newman Zacharias Agioutantis Gabriel Boede Jimenez Leon 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第1期57-64,共8页
Ground movements due to longwall mining operations have the potential to damage the hydrological balance within as well as outside the mine permit area in the form of increased surface ponding and changes to hydrogeol... Ground movements due to longwall mining operations have the potential to damage the hydrological balance within as well as outside the mine permit area in the form of increased surface ponding and changes to hydrogeological properties. Recently, the Office of Surface Mining, Reclamation and Enforcement(OSMRE) in the USA, has completed a public comment period on a newly proposed rule for the protection of streams and groundwater from adverse impacts of surface and underground mining operations(80 FR 44435). With increased community and regulatory focus on mining operations and their potential to adversely affect streams and groundwater, now there is a greater need for better prediction of the possible effects mining has on both surface and subsurface bodies of water. With mining induced stress and strain within the overburden correlated to changes in the hydrogeological properties of rock and soil, this paper investigates the evaluation of the hydrogeological system within the vicinity of an underground mining operation based on strain values calculated through a surface deformation prediction model. Through accurate modeling of the pre- and post-mining hydrogeological system, industry personnel can better depict mining induced effects on surface and subsurface bodies of water aiding in the optimization of underground extraction sequences while maintaining the integrity of water resources. 展开更多
关键词 STREAMS Aquifers Ground strain Coal mining
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