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管网叠压供水设备组件的应用分析 被引量:1
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作者 程宏伟 郑章 《福建建设科技》 2008年第3期69-70,共2页
本文对管网叠压供水设备中的倒流防止器和气压罐等器件的应用情况进行分析。表明如果此类器件在应用不当或产品性能达不到相应要求的情况下,管网叠压供水设备有可能无法满足节能、卫生、减少污染等目的,甚至还存在污染供水系统的隐患。
关键词 网叠压供水设备 倒流防止器 气压罐 卫生性能
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小容量高位水箱与管网叠压联合给水系统介绍
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作者 安忠林 肖睿书 《给水排水》 CSCD 北大核心 2007年第S2期230-232,共3页
分析了小容量高位水箱与管网叠压联合给水系统的原理、特点,并介绍了广西医科大学药学基础综合楼使用该供水系统的设计参数、系统原理等。
关键词 小容量高位水箱 网叠压 联合给水系统
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Numerical Investigation on Hydrodynamic Characteristics of a Tunneled Planing Hull in Calm Water
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作者 WANG Hui ZHU Ren-chuan +2 位作者 LI Guo-huan XU De-kang LI Chao-fan 《船舶力学》 EI 2024年第12期1864-1879,共16页
A tunneled planing hull has unique hybrid hydrodynamic and aerodynamic characteristics due to the presence of a tunnel.In this paper,experimental and numerical investigations on hydrody namic analysis of a tunneled pl... A tunneled planing hull has unique hybrid hydrodynamic and aerodynamic characteristics due to the presence of a tunnel.In this paper,experimental and numerical investigations on hydrody namic analysis of a tunneled planing hull are carried out.The resistance tests of models with three dif ferent masses(127.4 kg,159.5 kg,202.9 kg)are conducted for the Froude number in the range of 0.761≤Fn≤1.925.The results of resistance measured by towing tank imply that the tunneled planing hull with a larger displacement has a superior resistance performance.The numerical simulation of Reynolds Average Navier Stokes(RANS)equations based on the finite volume method is performed to analyze the hull characteristics in calm water(M=159.5 kg)with two degrees of freedom(sinkage and trim).The numerical results are compared with the experimental data,which shows good agreement.Pressure distribution,wave profiles and lift forces obtained by SST k-ωand Realizable k-εturbulence models are compared and discussed.Finally,the local fluid flow of streamline around the hull can be divided into four regions due to the presence of a tunnel,which is different from the behaviors of the conventional planing monohull with prismatic form. 展开更多
关键词 tunneled planing hull experimental test overset mesh method pressure distribution lift force
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