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聚热流条件下太阳能腔式接收器热工水力特性的优化

Optimization of thermo-hydraulic characteristics of solar cavity receiver under concentrated heat flux.

作者信息

Hao Yun, Wang Yueshe

机构信息

College of Mechanical Engineering, Xi'an Shiyou University, Xi'an, China.

State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an, China.

出版信息

Sci Prog. 2020 Jan-Mar;103(1):36850419875907. doi: 10.1177/0036850419875907. Epub 2019 Oct 7.

Abstract

It is important to study the effects of heat flux on the thermo-hydraulic characteristics in a solar cavity receiver because of the non-uniform radiation flux temporally and spatially. In this article, we presented a mathematical model of thermo-hydraulic characteristics of a solar cavity receiver, considering the effect of heat flux distribution on the energy transfer (radiation-conduction-convection). Using the model, the thermo-hydraulic characteristics under high concentrated heat flux were studied and then optimized the characteristics from two aspects: tube diameter (22, 27, 32, and 38 mm) and connection structure of the heating surface (H-type, central inlet/outlet, and vertical U-type). It was found that flow distribution changed smoothly at the diameter of 27 mm with the increase of the heat flux; when the diameter of tubes at the certain distance (1.6) from the spot center was replaced by 38 mm, the thermo-hydraulic characteristics were improved. For the evaporating surfaces, the thermo-hydraulic characteristics of working fluid (water) with the central inlet/outlet connection structure were better than those of the H-type connection structure. For the surperheated surfaces, the vertical U-type connection structure was applied to obtain the high temperature steam. These research findings are helpful for the safe and stable operation of the whole solar power system.

摘要

由于辐射通量在时间和空间上的不均匀性,研究热流对太阳能腔式接收器内热工水力特性的影响具有重要意义。在本文中,我们提出了一种太阳能腔式接收器热工水力特性的数学模型,考虑了热流分布对能量传递(辐射-传导-对流)的影响。利用该模型,研究了高聚热流下的热工水力特性,然后从管径(22、27、32和38毫米)和受热面连接结构(H型、中央进出口和垂直U型)两个方面对特性进行了优化。研究发现,随着热流的增加,27毫米管径处的流动分布变化平稳;当距光斑中心一定距离(1.6)处的管径替换为38毫米时,热工水力特性得到改善。对于蒸发表面,采用中央进出口连接结构的工作流体(水)的热工水力特性优于H型连接结构。对于过热表面,采用垂直U型连接结构以获得高温蒸汽。这些研究结果有助于整个太阳能发电系统的安全稳定运行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99fa/10358555/65e4e43f591d/10.1177_0036850419875907-fig1.jpg

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