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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Investigation of the thermal performance of a novel thermosyphon combined with fluidized bed heat transfer technology
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Investigation of the thermal performance of a novel thermosyphon combined with fluidized bed heat transfer technology

机译:一种新型热磷酸水合物与流化床传热技术的热性能研究

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摘要

In this paper, a novel method for enhancing the heat transfer performance of TPCT is proposed. And this novel method is to build a novel thermosyphon by introducing fluidized bed heat transfer technology into TPCT. The heat transfer performance of the novel thermosyphon is experimentally investigated. Results show that the heat transfer performance of the novel thermosyphon is significantly improved compared with the TPCT with pure water. In the domain of the filling volumes considered in the experimental work, the maximum heat transfer performance is obtained with filling volume phi = 40%, the amount of added particles epsilon(s) = 10% and heating power Q(H) 1000 W, and the overall thermal resistance is reduced by 8.3%. The evaporation and condensation heat transfer coefficients arc improved by up to 8.9% and 50.9%, and the corresponding optimal filling volume is 40% and 60% at epsilon(s) = 10%, Q(H) = 1000 W and epsilon(s) = 5%, Q(H) = 500 W. respectively. (C) 2020 Elsevier B.V. All rights reserved.
机译:本文提出了一种提高TPCT传热性能的新方法。并且这种新方法是通过将流化床传热技术引入TPCT来构建新的热磷酸氨基。新型热循环的传热性能是通过实验研究的。结果表明,与纯水的TPCT相比,新型热磷酸卟酚的传热性能显着提高。在实验工作中考虑的填充体积的域中,用填充体积PHI = 40%获得最大传热性能,添加颗粒εε= 10%和加热功率Q(H)1000W,并且总热阻减少了8.3%。蒸发和冷凝传热系数弧提高了高达8.9%和50.9%,相应的最佳填充体积为40%,ε在ε= 10%,q(h)= 1000w和epsilon(s) )= 5%,Q(H)= 500W。 (c)2020 Elsevier B.V.保留所有权利。

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