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Experimental study of wall-to-bed heat transfer in a supercritical water fluidized bed

机译:超临界水流化床中壁床传热的实验研究

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Supercritical water (SCW) fluidized bed is a new reactor concept for hydrogen production from biomass or coal gasification. This paper presents an experimental study of wall-to-bed heat transfer characteristics for Geldart-B particles in SCW fluidized bed with the conditions of pressure ranges from 22.3 MPa to 25.7 MPa and temperature ranges from 651 K to 730K. The effects of velocity, temperature and pressure on wall-to-bed heat transfer coefficient in SCW fluidized bed were discussed. The wall-to-bed heat transfer coefficient was found to be positively correlated with velocity and pressure, while negatively correlated with temperature within present experimental conditions. A dimensionless analysis was conducted using the Buckingham-theorem to derive the general form of an empirical wall-to-bed heat-transfer correlation in supercritical water fluidized bed for the Nusselt number, which was finalized based on the experimental data. What's more, the sold phase contributes more to the wall-to-bed heat transfer in SCW fluidized bed and the presence of solid phase enhances the heat transfer of SCW phase, which can be concluded from comparison of heat transfer between SCW fluidized bed and single phase of SCW. The experimental results and the proposed correlation in present work are useful for the design of SCW fluidized bed reactor. (C) 2018 Elsevier Ltd. All rights reserved.
机译:超临界水(SCW)流化床是生物质或煤气化氢生产的新反应堆概念。本文介绍了SCW流化床中Geldart-B颗粒的壁上床传热特性的实验研究,压力范围为22.3MPa至25.7MPa,温度范围为651 k至730K。讨论了速度,温度和压力对SCW流化床壁上传热系数的影响。发现壁到床的传热系数与速度和压力正相关,同时与本实验条件的温度呈负相关。使用Buckingham-定理进行无量纲分析,以导出在用于营养数的超临界水流化床中的经验壁上的传热相关的一般形式,其基于实验数据最终确定。更重要的是,已售阶段在SCW流化床中壁上的热传递有助于壁上的热传递,并且固相的存在增强了SCW相的传热,从SCW流化床之间的热传递比较可以得出结论SCW的阶段。实验结果和当前工作中的相关性可用于设计SCW流化床反应器。 (c)2018年elestvier有限公司保留所有权利。

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