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Improving the thermal performance of fluidized beds for concentrated solar power and thermal energy storage

机译:改善流化床的热性能,以用于集中式太阳能和热能存储

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摘要

Fluidization technology displays a long record of success stories, mostly related to applications to thermal and thermochemical processes, which is fostering extension to novel and relatively unexplored fields. Application of fluidized beds to collection and thermal storage of solar radiation in Concentrated Solar Power (CSP) is one of the most promising, a field which poses challenging issues and great opportunities to fluidization scientists and technologists. The potential of this growing field calls for reconsideration of some of the typical design and operation guidelines and criteria, with the goal of exploiting the inherently good thermal performances of gas fluidized beds at their best. "Creative" and non-conventional design and operation of fluidized beds, like those based on uneven or unsteady (pulsed) fluidization, may be beneficial to the enhancement of thermal diffusivity and surface-to-bed heat transfer, improving the potential for application in the very demanding context of CSP with thermal energy storage. (C) 2015 Elsevier B.V. All rights reserved.
机译:流化技术在成功的历史上记录了很长的历史,主要与热和热化学工艺的应用有关,这正促进向新的和相对未开发的领域的扩展。流化床在聚光太阳能(CSP)中收集和热储存太阳辐射的应用是最有前途的领域之一,该领域提出了具有挑战性的问题,并给流化科学家和技术人员带来了巨大机遇。这个不断发展的领域的潜力要求重新考虑一些典型的设计和操作准则以及准则,以期最好地利用气体流化床固有的良好热性能。流化床的“创新”和非常规设计和操作(例如基于不均匀或不稳定(脉冲)流化的流化床)可能有益于增强热扩散率和表面到床的传热,从而提高其应用潜力CSP与热能存储的非常苛刻的环境。 (C)2015 Elsevier B.V.保留所有权利。

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