首页> 外文会议>ASME international conference on energy sustainability >HEAT TRANSFER ANALYSIS OF A SOLID-SOLID HEAT RECUPERATION SYSTEM FOR SOLAR-DRIVEN NON-STOICHIOMETRIC REDOX CYCLES
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HEAT TRANSFER ANALYSIS OF A SOLID-SOLID HEAT RECUPERATION SYSTEM FOR SOLAR-DRIVEN NON-STOICHIOMETRIC REDOX CYCLES

机译:太阳能驱动非化学计量氧化还原循环的固热传热系统传热分析

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Heat transfer is analyzed numerically for a solid-solid heat recuperation system employed in a novel directly-irradiated solar thermochemical reactor realizing a metal oxide based non-stoichiometric redox cycle for production of synthesis gas from water and carbon dioxide. The system is designed for continuous operation with heat recuperation from a rotating hollow cylinder of a porous reactive material to a counter rotating inert solid cylinder via radiative transfer. A transient heat transfer model coupling conduction, convection, and radiation heat transfer modes is developed to predict temperatures of both components, rates of heat transfer, and the effectiveness of heat recuperation. Heat recovery effectiveness of over 50% is attained within a parametric study of geometric and material parameters corresponding to the design of a two-step solar thermochemical reactor.
机译:对新型直接辐射式太阳能热化学反应器中采用的固-固换热系统的传热进行了数值分析,该系统实现了基于金属氧化物的非化学计量的氧化还原循环,用于由水和二氧化碳生产合成气。该系统设计用于通过辐射传递从旋转的多孔反应材料空心圆柱体到反向旋转的惰性实心圆柱体的换热连续运行。建立了耦合传热,对流和辐射传热模式的瞬态传热模型,以预测两个组件的温度,传热速率和换热效率。在与两步式太阳能热化学反应器的设计相对应的几何和材料参数的参数研究中,热回收效率达到50%以上。

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