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首页> 外文期刊>International journal of hydrogen energy >Residence time distribution and flow field study of aero-shielded solar cyclone reactor for emission-free generation of hydrogen
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Residence time distribution and flow field study of aero-shielded solar cyclone reactor for emission-free generation of hydrogen

机译:无气产生氢的空气屏蔽太阳旋风反应器的停留时间分布和流场研究

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This paper provides a thorough analysis on the flow field and Residence Time Distribution (RTD) of our "aero-shielded cyclone solar reactor" designed to generate hydrogen from solar thermal methane cracking process. The analysis has been carried out based on the results from flow dynamics, and residence time distribution by using Computational Fluid Dynamics (CFD). Kinetics is taken from the literature and the reactor volume is estimated based on a plug flow reactor assumption. Residence time distribution characteristics are obtained by gas tracer injection method, and particle tracking method. Based on the results of our flow studies, "reactors in series model" is adopted to model the aero-shielded cyclone reactor. Path lines show that operating variables have significant effect on the flow behavior inside the reactor. Results show that thermo chemical properties of the gases have effect on the flow behavior which significantly affect the mean residence time in the reactor. Results also show that the residence time, spread of the tracer by variance, and the number of reactors in series are observed to be changed by change in the flow rate, type of screening gas, and methane mole fraction in the feed.
机译:本文对我们的“气旋式旋风太阳能反应堆”的流场和停留时间分布(RTD)进行了透彻的分析,该反应堆旨在从太阳热甲烷裂解过程中产生氢气。分析是基于流动动力学的结果以及使用计算流体动力学(CFD)的停留时间分布进行的。动力学取自文献,并且基于活塞流反应器假设来估计反应器体积。通过气体示踪剂注入法和粒子追踪法获得停留时间分布特性。根据我们的流动研究结果,采用“串联反应器”对空气旋流分离器进行建模。路径线显示,操作变量对反应器内部的流动行为具有重大影响。结果表明,气体的热化学性质对流动行为有影响,这显着影响反应器中的平均停留时间。结果还表明,观察到停留时间,示踪剂随方差的扩展以及串联​​反应器的数量会随着流速,筛查气体类型和进料中甲烷摩尔分数的变化而发生变化。

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