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Numerical study of turbulent porous media combustion coupled with thermoelectric generation in a recuperative reactor

机译:换热堆内湍流多孔介质燃烧与热电耦合的数值研究

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摘要

This paper presents two-dimensional simulations of an adiabatic recuperative porous media burner in turbulent regime coupled with thermoelectric elements. Time and volume averaged transport equations and second order turbulence model were employed. FLUENT was used to simulate the reactor through its UDF (User Defined Functions) and UDS (User Defined Scalars) interfaces for extra terms involving turbulence and thermoelectric quantities. The study includes the production of thermal NOx modeled by the extended Zeldovich mechanism with postprocessing computation. Flow and electric field computations were obtained considering as variables gas inlet velocity and composition, porous media thermal conductivity and inner wall insulation material. Flammability limits for stable combustion were found alongside with the electric potential generated within the system. Higher values of electrical potential, thermoelectric efficiency and flame temperatures were reached when the gas mixture energy content and heat recovery capacity of the system were increased. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了在湍流状态下与热电元件耦合的绝热换热多孔介质燃烧器的二维模拟。采用了时间和体积平均输运方程和二阶湍流模型。 FLUENT用于通过其UDF(用户定义的函数)和UDS(用户定义的标量)界面来模拟反应堆,以获得涉及湍流和热电量的额外术语。该研究包括通过扩展Zeldovich机理建模的热NOx生成和后处理计算。考虑到气体入口速度和组成,多孔介质的热导率和内壁绝缘材料作为变量,获得了流动和电场计算。发现稳定燃烧的可燃极限以及系统内产生的电势。当混合气体的能量含量和系统的热回收能力增加时,电势,热电效率和火焰温度将达到更高的值。 (C)2015 Elsevier Ltd.保留所有权利。

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