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1)  palingenetic drainage
再生水系
2)  The Water Re use System
再生水系统
3)  wastewater reclamation and reuse system
污水再生利用系统
1.
After making analysis on the problems existing in the design of water balance in urban wastewater reclamation and reuse system,including over-capacity or under-capacity,neglect of time fluctuation in amount of water and space distribution,and making no distinction for inlet water with different water quality,etc.
分析了城市污水再生利用系统中水量平衡设计存在的问题 ,包括水量设计能力过大或过小、未考虑水量的时间波动、未区分不同水质的来水、未结合空间分布等 ,提出借用社会学中常用的微观模拟的思想 ,将城市分为区域、小区和单元。
2.
【Method】 A SD-NLP model of system dynamics(SD) integrating with nonlinear programming with technological,economic and political constraints was established to carry out prediction and optimal analysis on future trend of wastewater reclamation and reuse in the city of Xi an,based on wastewater reclamation and reuse system.
【目的】探讨污水再生利用系统的发展趋势和投资需求。
4)  high-rate mixed bed regeneration waste water system
高速混床再生废水系统
5)  reclaimed water
再生水
1.
Effects of reclaimed water irrigation on soil environment of greenbelt .;
再生水灌溉对绿地土壤环境的影响
2.
Study on environmental security management mechanism for reclaimed water;
再生水的环境安全管理机制研究
3.
Experimental system built for reclaimed water fouling study on plate heat exchanger;
板式换热器再生水污垢影响换热实验台的搭建和初步实验研究
6)  reclaimed wastewater
再生水
1.
Review and perspectives of research status on reclaimed wastewater irrigation technologies;
再生水灌溉技术研究现状与展望
2.
Experimental study on anti-clogging performance of emitters for reclaimed wastewater irrigation;
再生水滴灌系统滴头抗堵塞性能试验研究
3.
Effects of reclaimed wastewater irrigation on the quality of maize and soybean;
再生水灌溉对玉米和大豆品质影响的试验研究
补充资料:长江水系水能资源


长江水系水能资源
hydropower resources of Changjiang (Yangtze) river system

ChongJ一ong sh一Jlx一sh口一ne,、g:一yL;o)、长江水系水能资源[hydropower resourees ofChangjiang(Yangtze)river System]据1950年《中华人民共和国水力资源普查成果》统计,长江水系水能资源理论蕴藏量为23478.2亿kw·h/a,其中技术可开发资源10275.2亿kw·h/a。长江水系可能开发的水能资源占中国比重为53%.主要分布于长江干流和雅碧江、大渡河、乌江、沉江、汉江和赣江等干流,以上河流可能开发资源年发电量占全水系的75%。水系内水能资源分布见表。
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