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作 者:葛新峰[1] 宁望望 钱朝辉 李龙威 鲍有方 孙洁[1] 闫晓彤 GE Xin-feng;NING Wang-wang;QIAN Zhao-hui;LI Long-wei;BAO You-fang;SUN Jie;YAN Xiao-tong(College of Energy and Electrical Engineering,Hohai University,Nanjing 210098,China)
机构地区:[1]河海大学能源与电气学院,江苏南京210098
出 处:《水电能源科学》2020年第10期145-147,共3页Water Resources and Power
基 金:中央高校基本科研业务费(2015B02814);河海大学创新创训项目(201910294032Z)。
摘 要:为充分利用高层建筑物内部的水能包括生活污水及高层建筑物顶楼雨水,可将其转化为电能。由此设计的储能水管-冲击式水轮机装置即通过冲击式水轮机和发电机将高层建筑物内部储存的生活污水及雨水的势能转变为可供使用的电能,并通过建立单户用水模拟模型,设置储能水管对30、100层建筑进行发电模拟。模拟结果表明,储能水管-冲击式水轮机发电具有很好的发电效益和节能减排社会效益,获得了日发电过程中冲击式水轮机的水头变换和启停特性,为该系统中冲击式水轮机的个性设计提供了依据。In order to take full advantage of internal water energy in high-rise buildings including domestic sewage and roof rainwater,the energy storage water pipe device was designed to converted into electricity,which is transform the water energy stored in high-rise buildings into electric energy for people’s life through the Pelton turbine and generator.Through the establishment of a single household water simulation model,the power generation of 30 story and 100 story buildings is simulated.The results show that the designed device has good power generation benefits and social benefits of energy conservation and emission reduction.The characteristics of the head change and the start-stop of the Pelton turbine are obtained,which can provide the basis for the individuality design of the Pelton turbine in the system.
关 键 词:储能水管 高层建筑物 冲击式水轮机 水能 二次利用
分 类 号:TK79[动力工程及工程热物理—流体机械及工程]
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