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Numerical simulation of a three-layer porous heat exchanger considering lattice Boltzmann method simulation of fluid flow

机译:三层多孔热交换器的数值模拟考虑晶格Boltzmann方法模拟流体流动

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摘要

The present study investigates the thermal characteristics of a proposed porous heat exchanger (PHE). This heat exchanger consists of three sections, one high-temperature (HT) section and two heat recovery (HR) sections. Product of combustion as a high-temperature gas mixture enters to HT section in which enthalpy of gas flow is converted to thermal radiation, while in HR sections, the reverse phenomenon occurs. Simulation of fluid flow in porous medium generated by random and regular monodisperse and polydisperse particles is done using combination of the lattice Boltzmann method and smoothed profile method. Because of high-temperature variation in this system, effect of temperature on thermo-physical properties is also considered which has not been studied in previous research studies. Since the gas and solid phases are in non-local thermal equilibrium, separate energy equations are used for these phases. To obtain the radiative term in the solid energy equation, the radiative transfer equation is solved numerically by the discrete ordinates method. The influence of particles array and their sizes on the efficiency of the PHE system is studied. Finally, the effects of various parameters like optical thickness and scattering coefficient on the performance of PHE system are investigated.
机译:本研究研究了所提出的多孔热交换器(PHE)的热特性。该热交换器由三个部分,一个高温(HT)部分和两个热回收(HR)部分组成。作为高温气体混合物的燃烧产物进入HT部分,其中气流焓转化为热辐射,而在HR部分中,发生反向现象。采用晶格玻璃板方法和平滑轮廓方法的组合进行随机常规和常规单分散和多分散颗粒产生的多孔介质中的流体流动模拟。由于该系统的高温变化,还考虑了在先前的研究研究中尚未研究温度对热物理性质的影响。由于气体和固相处于非局部热平衡,因此使用单独的能量方程用于这些相。为了在固体能量方程中获得辐射术语,通过离散坐标方法在数值上进行辐射转移方程。研究了粒子阵列的影响及其对PHE系统效率的尺寸。最后,研究了光厚度和散射系数对PHE系统性能的各种参数的影响。

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