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FLUID/THERMAL ANALYSIS OF HIGH TEMPERATURE HEAT EXCHANGER AND CHEMICAL DECOMPOSER FOR HYDROGEN PRODUCTION

机译:高温热交换器和化学分解的流体/热分析氢气生产

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This paper presents fluid flow and heat transfer study of a high temperature heat exchanger and chemical decomposer. The decomposer will be used as a part of the plant for hydrogen production. The decomposer is manufactured using fused ceramic layers that allow creation of channels with dimensions below one millimeter. The main purpose for this study is to increase thermal performance of the decomposer which can help to intensify sulfuric acid decomposition rate. Effects of using various channel geometries of the decomposer on the pressure drop are studied as well. A three-dimensional computational model is developed for the investigation of fluid flow and heat transfer in the decomposer. Several different geometries of the decomposer channels such as straight channels, ribbed ground channels, hexagonal channels, and diamond-shaped channels are examined. Based on results of the calculation, the recommendations for the improved design of the decomposer are obtained.
机译:本文介绍了高温换热器和化学分解器的流体流动和传热研究。分解器将用作氢生产植物的一部分。使用熔融陶瓷层制造分解器,该熔融陶瓷层允许在一毫米以下的尺寸上产生通道。本研究的主要目的是增加分解器的热性能,这有助于加强硫酸分解速率。研究了使用分解器对压降的各种通道几何形状的影响。开发了一种三维计算模型,用于调查分解器中的流体流动和热传递。检查了几种不同几何形状的分解通道,例如直通道,罗纹接地通道,六边形通道和菱形通道。基于计算结果,获得了改进分解器设计的建议。

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