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先导式减压阀在蒸汽系统节能改造中的应用
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作者 吴海东 曹剑栋 周佃民 《上海节能》 2011年第12期31-33,共3页
对于负荷波动较大的蒸汽系统,减压阀的设计至关重要,不恰当的选型对设备安全与系统节能均会带来不利影响。先导式减压阀并联阀站对负荷变化适应能力强,可稳定可靠地保证供汽压力,消除蒸汽放散。在所述案例中,采用先导式减压阀并联阀站,... 对于负荷波动较大的蒸汽系统,减压阀的设计至关重要,不恰当的选型对设备安全与系统节能均会带来不利影响。先导式减压阀并联阀站对负荷变化适应能力强,可稳定可靠地保证供汽压力,消除蒸汽放散。在所述案例中,采用先导式减压阀并联阀站,取代原有的活塞式减压阀,解决了活塞式减压阀对负荷变化适应能力弱,无法静态减压,系统蒸汽放散,供汽不稳定等问题,为负荷波动较大场合下的蒸汽减压设计提供了新的思路。改造后设备运行稳定,安全可靠,颇有推广使用价值。 展开更多
关键词 蒸汽系统 先导式减压 并联 静态减压 阀站 节能
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活塞式减压阀结构性能的分析与探讨 被引量:1
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作者 吴政 《阀门》 北大核心 2000年第5期1-3,共3页
对活塞式减压阀的结构和工作原理进行了分析 ,提出并强调了减压阀静态减压性能的意义 ,同时介绍了几种改进型的活塞式减压阀结构。
关键词 活塞式减压 静态减压性能 结构分析
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先导活塞式减压阀的工作原理及应用 被引量:2
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作者 王慧 贺超 《山东电力高等专科学校学报》 2011年第4期40-43,共4页
减压阀是工业系统常用阀门,本文简单介绍了减压阀的工作原理、分类。电厂水处理中经常使用先导活塞式减压阀,本文讨论了先导活塞式减压阀动态减压、静态不减压性能,提出了一系列解决方案:如缩短减压阀后管道长度、安装放气阀、使用新型... 减压阀是工业系统常用阀门,本文简单介绍了减压阀的工作原理、分类。电厂水处理中经常使用先导活塞式减压阀,本文讨论了先导活塞式减压阀动态减压、静态不减压性能,提出了一系列解决方案:如缩短减压阀后管道长度、安装放气阀、使用新型产品等,并总结了先导活塞式减压阀使用中的一些注意事项。 展开更多
关键词 减压 先导活塞式 动态减压 静态减压
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Low strain rate compressive behavior of high porosity closed-cell aluminum foams 被引量:3
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作者 LI BinChao ZHAO GuiPing LU TianJian 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第2期451-463,共13页
The impact of a rigid body(protected structure) together with cushion material(cellular metal foam) on hard ground from a fixed height was investigated.An analytical one-degree-of-freedom colliding model(ODF-CM) was e... The impact of a rigid body(protected structure) together with cushion material(cellular metal foam) on hard ground from a fixed height was investigated.An analytical one-degree-of-freedom colliding model(ODF-CM) was established to analyze the protection ability and energy absorption by the foam under low velocity impact conditions.For validation,drop hammer experiments were carried out for high porosity closed-cell aluminum foam specimens subjected to low velocity impact loading.The dynamic deformation behavior of the specimen was observed and the velocity attenuation of the drop hammer was measured.The results demonstrated that the aluminum foam had excellent energy absorption capabilities,with its dynamic compressive behavior similar to that obtained under quasi-static loading conditions.Finite element method(FEM) was subsequently employed to obtain stress distributions in the foam specimen.As the propagating period of stress in the specimen was far less than the duration of attenuation,the evolution of the stress was similar to that under quasi-static loading conditions and no obvious stress wave effect was observed,which agreed with the experimental observation.Finally,the predicted velocity attenuation by the ODF-CM was compared with both the experimental measurements and FEM simulation,and good agreements were achieved when the stress distribution was considered to be uniform and the "quasi-static" compressive properties are employed. 展开更多
关键词 aluminum foam low velocity impact drop hammer experiment analytical model finite element method
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