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Experimental investigation of the thermal performance of closed loop flat plate oscillating heat pipe

机译:闭环平板振荡热管热性能的实验研究

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摘要

A number of theoretical studies and experimental investigations have been carried out on the closed loop flat plate oscillating heat pipe (CLFP-OHP) in the past decades. However, due to the complex working mechanism of CLFP-OHP, the effects of operational and geometrical parameters on the thermal performance CLFP-OHP have not been completely revealed so far. In the present study, the CLFP-OHP was investigated with different operational parameters (charge ratio, orientation, and heat load) and geometrical parameters (channel size and shape). In order to investigate the effect of these parameters, parallel mini channels were machined onto the copper plate and acetone was used as working fluid to form CLFP-OHP. An attempt has been made to resolve the critical charge ratio of acetone for CLFP-OHP. The measured thermal resistance found strongly dependent on operational and geometrical parameters. The best performance was observed by acetone with a charge ratio of 60% in the vertical orientation for square (2 x 2 mm(2)) channels. The lowest thermal resistance of 0.39 degrees C/W achieved for acetone at 100 W. The thermal conductivity of CLFP-OHP reached to 3205 W/m degrees C.
机译:在过去的几十年中,已经在闭环平板上进行了许多理论研究和实验研究,并在闭环平板上振荡热管(CLFP-OHP)进行。然而,由于CLFP-OHP的复杂工作机制,到目前为止,由于CLFP-OHP的运算和几何参数对热性能CLFP-OHP的影响尚未完全揭示。在本研究中,采用不同的操作参数(电荷比,取向和热负荷)和几何参数(通道尺寸和形状)来研究CLFP-OHP。为了研究这些参数的效果,将平行的迷你通道加工到铜板上,用丙酮作为工作流体以形成CLFP-OHP。已经尝试解决CLFP-OHP的丙酮的临界电荷比。测量的热阻发现强烈取决于操作和几何参数。通过丙酮观察到最佳性能,其电荷比为60%的正方形(2×2mm(2))通道。在100W的丙酮中实现0.39摄氏度的最低热阻.CLFP-OHP的导热率达到3205W / m℃。

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