首页> 外文会议>International Solar Energy Conference(Solar 2004); 20040711-14; Portland,OR(US) >TWO-DIMENSIONAL AXI-SYMMETRIC MODEL OF A SOLAR-THERMAL FLUID-WALL AEROSOL FLOW REACTOR
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TWO-DIMENSIONAL AXI-SYMMETRIC MODEL OF A SOLAR-THERMAL FLUID-WALL AEROSOL FLOW REACTOR

机译:地热流体壁气溶胶流动反应器的二维轴对称模型

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A solar-thermal fluid-wall reactor consisting of three concentric vertical tubes is constructed to dissociate methane to hydrogen and carbon black using concentrated solar power. Several aspects of the design are modeled for scaling the system up: the heat transfer and its effect on the integrity of the materials, and the fluid flow of all gas streams within the reactor. It is determined that the inlet gas temperatures, mass flow rates, and permeability of the porous wall affect the gas flow profile through the porous tube wall. By increasing the inlet gas temperature and/or the tube permeability in the hot zone section of the reactor, a more uniform flow profile can be obtained along the length of the tube.
机译:构造了一个由三个同心垂直管组成的太阳热流体壁反应器,利用集中的太阳能将甲烷分解为氢气和炭黑。对设计的几个方面进行了建模以扩大系统规模:传热及其对材料完整性的影响,以及反应器内所有气流的流体流动。可以确定的是,进气温度,质量流量和多孔壁的渗透性会影响通过多孔管壁的气流分布。通过增加反应器的热区部分中的入口气体温度和/或管渗透性,可以沿着管的长度获得更均匀的流动分布。

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