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德国埃姆歇河流域水生态环境综合治理技术体系及启示 被引量:1
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作者 尹文超 卢兴超 +4 位作者 薛晓宁 张卫 董紫君 赵昕 王宝贞 《净水技术》 CAS 2020年第11期1-11,15,共12页
德国埃姆歇河流域水生态环境综合治理是世界污染水体成功治理的经典案例,通过实地走访、座谈交流和资料分析等方式,展现该流域1个多世纪以来生态环境治理技术体系的全貌,内容涵盖了流域经济社会发展、政策衍变历程、组织协调管理机构、... 德国埃姆歇河流域水生态环境综合治理是世界污染水体成功治理的经典案例,通过实地走访、座谈交流和资料分析等方式,展现该流域1个多世纪以来生态环境治理技术体系的全貌,内容涵盖了流域经济社会发展、政策衍变历程、组织协调管理机构、规划安排和工程建设技术等多个方面。可知:一是受高度工业化和城镇化发展而严重污染的流域水环境,从“黑水变清”再到“重返自然”需要一个漫长的过程,没有捷径可走;二是完善可靠的雨污水收集管网和构筑物、适应雨污混合污水的市政污水处理厂、高标准的工业废水处理厂等灰色基础设施建设是黑水变清的前提,是不可逾越的第一阶段;三是沿河地下深隧截污-净化系统、流域支干流蓝绿生态网络和城市绿色雨水基础设施等的构建是城市人工环境与自然生态环境之间“点-线-面”的缓冲系统,目的是最大限度地减少人类活动对自然生态系统的干扰,达到“重返自然”的效果,是美好向往的第二阶段。当前,在我国新型城镇化建设和城乡融合发展不断推进的过程中,学习埃姆歇河流域水生态环境综合治理,科学理性认识各项技术体系的阶段性和长期性,对我国流域水生态环境向“重返自然”的美好愿景前进具有重要借鉴意义。 展开更多
关键词 流域水生态环境 综合治理规划 重返自然 地下深隧 截污-净化系统 市政污水 工业废水 蓝绿生态网络 绿色雨水基础设施
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Experimental simulation investigation of influence of depth on spalling characteristics in circular hard rock tunnel 被引量:30
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作者 LUO Yong GONG Feng-qiang +1 位作者 LI Xi-bing WANG Shan-yong 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第3期891-910,共20页
A series of true-triaxial compression tests were performed on red sandstone cubic specimens with a circular hole to investigate the influence of depth on induced spalling in tunnels.The failure process of the hole sid... A series of true-triaxial compression tests were performed on red sandstone cubic specimens with a circular hole to investigate the influence of depth on induced spalling in tunnels.The failure process of the hole sidewalls was monitored and recorded in real-time by a micro-video monitoring equipment.The general failure evolution processes of the hole sidewall at different initial depths(500 m,1000 m and 1500 m)during the adjustment of vertical stress were obtained.The results show that the hole sidewall all formed spalling before resulting in strain rockburst,and ultimately forming a V-shaped notch.The far-field principal stress for the initial failure of the tunnel shows a good positive linear correlation with the depth.As the depth increases,the stress required for the initial failure of the tunnels clearly increased,the spalling became more intense;the size and mass of the rock fragments and depth and width of the V-shaped notches increased,and the range of the failure zone extends along the hole sidewall from the local area to the entire area.Therefore,as the depth increases,the support area around the tunnel should be increased accordingly to prevent spalling. 展开更多
关键词 deep underground engineering circular tunnels SPALLING strain rockburst true-triaxial loading V-shaped notch
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