Radiative heat transfer in solar thermochemical particle reactor: A comprehensive review

Radiative heat transfer in solar thermochemical particle reactor: A comprehensive review
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太阳能热化学粒子反应器中的辐射传热:综合综述

DOI:
10.1016/j.rser.2017.01.165
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发表时间:
2017-06
影响因子:
15.9
通讯作者:
Liu Linhua
Liu Linhua
中科院分区:
工程技术1区
文献类型:
--
作者:
Wang Fuqiang;Ma Lanxin;Cheng Ziming;Tan Jianyu;Huang Xing;Liu Linhua

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涉及吸热反应的热化学反应可以利用集中的太阳辐射作为高温加工热的能源。在过去的几十年里,太阳能热化学反应堆的发展取得了巨大的进步。太阳能热化学反应堆的最高温度可以达到1500℃或更高,热量主要通过辐射热传递到反应堆中的粒子。本文对颗粒太阳能热化学堆的辐射换热进行了全面综述。本文首先介绍了太阳能热化学反应中常用的催化剂、太阳能热化学反应的类型和辐射传输理论。此外,还报道了近年来在获取粒子光谱辐射性质、辐射传热学研究进展以及与太阳热化学反应耦合的辐射传热学方面的最新进展。最后,展望了在太阳能热化学堆中获取高温粒子光谱辐射特性和辐射换热方面的进一步发展和前景。
Thermochemical reactions involved in endothermic reactions can make use of concentrated solar irradiation as the energy source for high-temperature processed heat. Over the past few decades, tremendous progress has been made in the development of solar thermochemical reactors. The maximum temperature in a solar thermochemical reactor can reach 1500 K or higher, and heat is transferred to the particles in the reactor predominantly by radiative heat transfer. The present work provides a comprehensive review of radiative heat transfer in particle solar thermochemical reactors. The review first covers the commonly used catalysts in solar thermochemical reactions, types of solar thermochemical reactors, and the theory of radiative transfer. Further, recent developments in obtaining the spectral radiative properties of particles, the progress of radiative heat transfer research, and radiative heat transfer coupled with solar thermochemical reactions are reported. Finally, further developments and future prospects for obtaining the spectral radiative properties of high-temperature particles and radiative heat transfer in solar thermochemical reactor are outlined.
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