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Evaluation of internal structure modifications effect of two-phase closed thermosyphon on performance: An experimental study

机译:两相封闭热循环对性能的内部结构改性的评价:实验研究

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In this paper, an experimental study has been carried to enhance the effectiveness of a two-phase closed ther-mosyphon (TPCT) type heat pipe. For this purpose, three different designs have been developed by modifying the internal structure so as not to interfere with the physical operation of TPCT. Three heat pipes with different internal structures were manufactured with additional pipes placed longitudinally inside the evaporator and condenser sections of the normal (conventional) TPCT. Ionized pure water is used as a working fluid at the same rate in Normal, Type-1, Type-2, and Type-3 heat pipes. TPCTs are positioned at three different inclination angles, 26 degrees, 41 degrees, and 56 degrees, to see the performance effect not only among themselves but also on the changes made by the gravitational effect. For each tilt angle, four TPCTs were simultaneously powered by solar energy on three different days. As a result of the experiments carried out in July, it has been observed that the optimum incli-nation angle for solar water heated TPCT is 26 degrees. In addition, it was found that with the increase of the angle of tilt, the thermal resistance (R) of the heat pipes also increased and the heat transferability of the TPCT decreased. Comparing the new designs and normal TPCT, Type-2 acted better at tilt angles of both 26 degrees and 41oAs a result, the heat transfer and efficiency of normal TPCT have been improved by almost 14% with Type-2 at the tilt angle of 26 degrees.
机译:在本文中,已经进行了实验研究以提高两相闭合摩尔薄膜(TPCT)型热管的有效性。为此目的,通过修改内部结构,开发了三种不同的设计,以便不干扰TPCT的物理操作。具有不同内部结构的三个热管,用额外的管道纵向放置在正常(常规)TPCT的蒸发器和冷凝器部分内。在正常,1型-2和3型热管中以相同速率使用电离纯水。 TPCT在三个不同的倾斜角度,26度,41度和56度上定位,不仅可以看到性能效果,而且还要在重力效应所做的变化上。对于每个倾斜角度,在三个不同的日子上由太阳能同时供电四个TPCT。由于7月进行的实验,已经观察到太阳能水热量的最佳含量为26度。另外,发现随着倾斜角的增加,热管的热阻(R)也增加,TPCT的热传递性降低。比较新的设计和正常TPCT,2型在26度和41oA的倾斜角度下作用,结果,正常TPCT的热传递和效率在26的倾斜角度下,型号2的提高了近14%程度。

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