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气流诱发调节阀杆振动的研究 被引量:15
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作者 屠珊 孙弼 毛靖儒 《动力工程》 CAS CSCD 北大核心 2004年第5期729-731,共3页
应用调节阀模型试验台和微小型高频动态压力传感器及其采集测量系统,对汽轮机常用的型线阀和球型阀的内部流场进行测试,着重于阀门不稳定工况和振动工况,并且采用谱分析方法对测试数据进行了分析研究。结果表明:型线阀比球型阀的流场脉... 应用调节阀模型试验台和微小型高频动态压力传感器及其采集测量系统,对汽轮机常用的型线阀和球型阀的内部流场进行测试,着重于阀门不稳定工况和振动工况,并且采用谱分析方法对测试数据进行了分析研究。结果表明:型线阀比球型阀的流场脉动强度小,阀门稳定工况范围更大;从安全角度讲,球型阀用于较小升程不太合适。 展开更多
关键词 动力机械工程 汽轮机 流体激振 型线阀
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Design and Experiment of Streamlined Piezoelectric Pump with Low Vortex and Large Flow Rate 被引量:1
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作者 BIAN Kan HUANG Zhi +4 位作者 BAO Qibo ZHANG Jianhui LAI Liyi CHEN Xiaosheng CHEN Zhenlin 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2020年第1期155-163,共9页
Valveless piezoelectric pump is widely used in the medical,however,there is a general and difficult problem to be solved:Low vortex and large flow rate are not compatible,resulting in the blood prone to thrombosis dur... Valveless piezoelectric pump is widely used in the medical,however,there is a general and difficult problem to be solved:Low vortex and large flow rate are not compatible,resulting in the blood prone to thrombosis during blood delivery.In this paper,a new valveless piezoelectric(PZT)pump with streamlined flow tubes(streamlined pump)is proposed.The design method and the working principle of the pump are analyzed.The velocity streamlines are simulated,and the results demonstrate that there are no obvious vortexes in the flow tube of the streamlined pump.Five prototype pumps(two cone pumps and three streamlined pumps)are designed and fabricated to perform flow rate and flow resistance experiments.The experimental results illustrate that the maximum flow rate of the streamlined pump is 142 mL/min,which is 179%higher than that of the cone piezoelectric pump,demonstrating that the streamlined pump has a large flow rate performance.This research provides an inspiration for future research on simple structure,low vortex and large flow rate volume-type pumps,and also provides a useful solution for thrombosis preventing. 展开更多
关键词 valveless piezoelectric pump streamlined low vortex high flow rate THROMBOSIS
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