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Jet impingement cooling in VSCF generators

机译:VSCF发电机中的喷射冲击冷却

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A cooling technique is devised which will maintain the electronics within their thermal operating limits when the power output of currently used FSCFs is augmented to 65 kVA from 40 kVA. This study suggests that the use of jet impingement cooling selectively applied in regions of high heat flux will support the enhancement in performance desired. Experiments were run to determine the forced convective cooling of the current VSCF design. Experiments were then run to determine the submerged jet impingement cooling characteristics. Finally a FEA numerical model of the SCR module mounted on the tube flange with forced convection and jet impingement cooling was set up. The FE analysis indicated that at 65 kVA submerged jet impingement cooling will mitigate the temperatures of the SCRs sufficiently to maintain them within their operating envelope.
机译:设计了冷却技术,当当前使用的FSCF的电源输出增加到40 kVA时,当当前使用的FSCFS的功率输出增加到65 kVA时,将使电子器件保持在其热操作限制内。本研究表明,在高热通量区域中选择性地应用喷射冲击冷却将支持所需性能的增强。运行实验以确定当前VSCF设计的强制对流冷却。然后运行实验以确定浸没式喷射冲击冷却特性。最后,设置了安装在管法兰上的SCR模块的FEA数模型,采用强制对流和喷射冲击冷却。 Fe分析表明,在65 kVA浸没式喷射冲击冷却将使SCR的温度充分降低,以将它们维持在其操作包膜内。

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