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平面连杆机构作用力平衡的复式质量方法
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作者 J.Yao M.R.Smith +1 位作者 于慧 高淑杰 《科教译丛》 2000年第1期13-18,共6页
提出了一种改进的平面连杆机构力平衡的复式质量法。这种改进是在简一种机构质量流方法的基础上形成的.它阐明了每个连杆的质量是如何流向基座.从而获得一个固定的总质量中心的。新的方法不仅保留了复式质量法的优点.排除了建立机构... 提出了一种改进的平面连杆机构力平衡的复式质量法。这种改进是在简一种机构质量流方法的基础上形成的.它阐明了每个连杆的质量是如何流向基座.从而获得一个固定的总质量中心的。新的方法不仅保留了复式质量法的优点.排除了建立机构总质量中心的表达式的必要性,而且导出了平衡方程的通用形式.它不依赖于选择具有质量不同分配的连轩.更主要的是,任何机构的力平衡关系都可用质量流图一步一步快速地完成。 展开更多
关键词 平面连杆机构 力平衡 复式质量 质量
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Control of Secondary Flow in a Low Solidity Circular Cascade Diffuser 被引量:5
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作者 Daisaku Sakaguchi Takuji Fujii +2 位作者 Hironobu Ueki Masahiro Ishida Hiroshi Hayami 《Journal of Thermal Science》 SCIE EI CAS CSCD 2012年第4期384-390,共7页
According to the previous experimental works on the low solidity circular cascade diffuser (LSD), a pressure recovery of a centrifugal blower was improved by the LSD significantly in a wide range of flow rate, and the... According to the previous experimental works on the low solidity circular cascade diffuser (LSD), a pressure recovery of a centrifugal blower was improved by the LSD significantly in a wide range of flow rate, and the pres-sure recovery was improved further by the LSD with a tandem cascade in comparison with the LSD with a sin-gle-row cascade. In the present study, the flow behavior in the LSD with the tandem cascade has been analyzed numerically by using the commercial CFD code of ANSYS-CFX12. It was shown clearly that the higher pressure recovery was achieved by applying the LSD with the tandem cascade, and the high pressure recovery is based on the high pressure rise in the vaneless space upstream of the LSD and the high blade loading of the front blade of the LSD. The high pressure recovery in the LSD could be achieved by controlling the flow separation on the suc-tion surface of the front blade and also on that of the rear blade due to formation of the favorable secondary flow and due to increase in mass flow passing through the slit section between the front and rear blades. 展开更多
关键词 LSD (Low solidity circular cascade diffuser) Centrifugal blower Range enhancement Tandem cascade
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