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Lattice Boltzmann simulation of thermofluidic transport phenomena in a DC magnetohydrodynamic (MHD) micropump

机译:直流磁流体动力学(MHD)微型泵中热流输运现象的Lattice Boltzmann模拟

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摘要

A comprehensive non-isothermal Lattice Boltzmann (LB) algorithm is proposed in this article to simulate the thermofluidic transport phenomena encountered in a direct-current (DC) magnetohydrodynamic (MHD) micropump. Inside the pump, an electrically conducting fluid is transported through the microchannel by the action of an electromagnetic Lorentz force evolved out as a consequence of the interaction between applied electric and magnetic fields. The fluid flow and thermal characteristics of the MHD micropump depend on several factors such as the channel geometry, electromagnetic field strength and electrical property of the conducting fluid. An involved analysis is carried out following the LB technique to understand the significant influences of the aforementioned controlling parameters on the overall transport phenomena. In the LB framework, the hydrodynamics is simulated by a distribution function, which obeys a single scalar kinetic equation associated with an externally imposed electromagnetic force field. The thermal history is monitored by a separate temperature distribution function through another scalar kinetic equation incorporating the Joule heating effect. Agreement with analytical, experimental and other available numerical results is found to be quantitative.
机译:本文提出了一种综合的非等温格子Boltzmann(LB)算法,以模拟直流(DC)磁流体动力学(MHD)微型泵中遇到的热流体传输现象。在泵内部,由于施加的电场和磁场之间的相互作用而产生的电磁洛伦兹力的作用下,导电流体通过微通道传输。 MHD微型泵的流体流量和热特性取决于几个因素,例如通道的几何形状,电磁场强度和导电流体的电特性。遵循LB技术进行了相关分析,以了解上述控制参数对整体运输现象的重大影响。在LB框架中,通过分配函数模拟流体动力学,该函数遵循与外部施加的电磁力场相关的单个标量动力学方程。通过单独的温度分布函数,通过结合了焦耳热效应的另一个标量动力学方程式来监控热历史。发现与分析,实验和其他可用数值结果的一致性是定量的。

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