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A novel autothermal fluidized bed reactor for concentrated solar thermal applications

机译:用于浓缩太阳能热应用的新型自热流化床反应器

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摘要

In the present study a novel directly-irradiated fluidized bed autothermal reactor (DIFBAR) for solar-driven chemical processing is presented. The reactor exploits the very concept of the autothermal reactor applied to multiphase flow of fluidized solids: a gas-solid suspension is preheated in a tubular riser prior to being exposed to radiative flux and further heated up in a concentrated solar receiver. Preheating is accomplished by solids leaving the receiver as they flow countercurrently in an annular dipleg coaxial to the riser. The dipleg may be designed so as to make the receiver section gas leak-tight with respect to the other zones of the reactor. An experimental campaign was performed under non-reactive conditions and at moderate radiative flux, hence moderate temperatures, with the purpose of demonstrating the feasibility and operability of the autothermal reactor, as a preliminary step toward a full proof-of-concept. Solids circulation rates and temperatures were measured as a function of the gas superficial velocity in the riser under given simulated solar irradiance. Infrared thermography was applied to further characterize multiphase flow and thermal patterns in the receiver. Experimental data were worked out to calculate the annulus-to-riser heat transfer coefficients. The reactor demonstrated excellent "autothermal" operation, thanks to very efficient heat transfer across the riser-annulus interface. Collection of solar energy was fairly good, with maximum thermal efficiency close to 70%, despite the design of the receiver was not specifically optimized to minimize radiative and convection losses. A preliminary analysis aimed at the scale-up of the autothermal reactor is presented. Altogether, results obtained are quite promising and stimulate further research on the development of reactors based on the proposed design for solar chemistry applications.
机译:在本研究中,提出了一种用于太阳能驱动的化学处理的新型直接照射的流化床自热反应器(Difbar)。反应器利用适用于流化固体的多相流动的自热反应器的非常概念:在暴露于辐射通量之前在管状提升板中预热气体固体悬浮液,并进一步在浓缩的太阳能接收器中加热。通过固体完成预热,当它们在环状二角形同轴逆转到提升管时流动地流动。 Dipleg可以设计成使接收器段气体相对于反应器的另一个区域泄漏。在非反应性条件下进行实验活动,并且在适度的辐射通量下进行,因此温度适中,目的是展示自热反应器的可行性和可操作性,作为朝向全部概念验证的初步步骤。在给定模拟太阳辐照度下,测量固体循环速率和温度作为提升器中的气体表面速度的函数。应用红外热成像以进一步表征接收器中的多相流动和热图案。制定实验数据以计算环形到立管传热系数。反应器证明了优异的“自热”操作,由于在立式环接口上的非常有效的传热。太阳能集合相当良好,最大热效率接近70%,尽管接收器的设计没有明确优化,以最大限度地减少辐射和对流损失。介绍了旨在在自热反应器的扩展的初步分析。完全,获得的结果非常有前途和刺激基于建议的太阳能化学应用设计的反应器的开发进一步研究。

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