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机构地区:[1]无锡环境科学与工程研究中心,江苏无锡214000 [2]无锡城市职业技术学院,江苏无锡214000
出 处:《环境工程》2016年第1期155-158,共4页Environmental Engineering
基 金:江苏省博士后科研资助计划课题(1301065C);2014年大学生创新创业训练计划项目(201413748014X);江苏省教育厅高校哲学社会科学研究项目(2014SJD388);无锡市教育科学"十二五"规划课题(J/D/2014/018)
摘 要:传统雨水回用工程通常未能有效地将生态式处理与节能式回用有效结合,将雨水花园与光伏系统有机结合进行协同设计,前者对厂区收集雨水进行处理,后者为雨水回用及厂区用电提供电能,其中雨水花园设计内容主要包括花园设计、面积计算、设备选择,光伏系统主要设计内容包括电池组件、并网逆变器的设计计算。经初步估算,雨水花园每年可为厂区节约水费2.51万元,光伏系统每年可为雨水回用与厂区用电节约电费22.88万元。The traditional rainwater harvesting project failed to effectively combine ecological treatment with energy saving. In this case,the rain garden and photovoltaic system were united for collaborative design. The former was to dispose rainwater collected in factory,the latter was to provide electric power for rainwater reuse and the plant producing. The rain garden design contents mainly included garden design,area calculation,and equipment selection. The photovoltaic system design was mainly about calculation of battery module and grid connected inverter. After the preliminary estimates,saving the cost of water was25100 Yuan every year by rain garden,and power cost saving was 228800 Yuan every year using photovoltaic system for rain water reuse and the plant producing.
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