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Transient parametric pilot study on thermosyphon heat transport device: A computational fluid dynamics hypothesis and experimental exploration

机译:潮热烃热传输装置的瞬态参数试验研究:计算流体动力学假设和实验探索

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摘要

This study aims to examine the practicality of a novel passive heat transport system "thermosyphon heat transport device" (THTD). It is a fluid-filled unit, with both source and sink amalgamated within it. A vertical tube-in-tube design has been incorporated, consisting of heat source, adiabatic height, and sink. To showcase the performance, a transient numerical analysis is performed using ANSYS Fluent, which is compared with the simple closed thermosiphon (SCT) for heat transport capability (1 kW) and different adiabatic heights (0.25,1, and 1.5 m). Also, the influence of axial conduction is examined. The proposed Therminol VP1-based THTD has better heat transport capability over SCT due to a uniform flow pattern. Although the time response diminishes with adiabatic height, the novelty is justified as the heat gained by THTD (adiabatic height: 1.5 m) is 1.5 times more than SCT. Furthermore, the THTD performance is experimentally analyzed by varying the coolant flow rate (0.01, 0.02, and 0.03 kg/s), heat load (100-600 W), and transport distance (0.25 and 0.75 m), which yielded 80%-90% energy efficiency. As the THTD is crucial for a conceptual solar indoor cooker, the response under transient heating/cooling conditions is also investigated, which depicted 300 s for transient heating and 10-50 s for transient cooling.
机译:本研究旨在检验新型无源传热系统“热循环热传输装置”(THTD)的实用性。它是一种流体填充的单元,带有源头和沉没在其中融合。垂直管内设计已融合,包括热源,绝热高度和水槽。为了展示性能,使用ANSYS流畅的瞬态数值分析,其与用于热传输能力(1 kW)和不同的绝热高度(0.25,1和1.5米)的简单闭合热虹吸管(SCT)进行比较。而且,检查轴向传导的影响。所提出的热门VP1的THTD由于均匀的流动图案而在SCT上具有更好的热传输能力。虽然时间反应与绝热高度减小,但是新奇性是合理的,因为通过THTD(绝热高度:1.5米)获得的热量比SCT的1.5倍。此外,通过改变冷却剂流速(0.01,0.02和0.03kg / s),热负荷(100-600W)和运输距离(0.25和0.75米)进行实验分析THTD性能,从而产生80% - 90%的能效。随着THTD对于概念太阳室内炊具至关重要,还研究了瞬态加热/冷却条件下的响应,其描绘了300秒,用于瞬态加热和10-50秒,用于瞬态冷却。

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