首页> 外文会议>ASME international mechanical engineering congress and exposition >NUMERICAL INVESTIGATION ON THERMAL AND FLUID DYNAMIC BEHAVIORS OF A THERMOELECTRIC GENERATOR IN AN EXHAUST AUTOMOTIVE LINE WITH ALUMINIUM FOAM
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NUMERICAL INVESTIGATION ON THERMAL AND FLUID DYNAMIC BEHAVIORS OF A THERMOELECTRIC GENERATOR IN AN EXHAUST AUTOMOTIVE LINE WITH ALUMINIUM FOAM

机译:铝泡沫排气管中热电发生器的热和流体动力特性的数值研究

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In the present work a two-dimensional steady state convective heat transfer problem in a channel aluminum foam partially filled with an external thermos-electrical generator (TEG) component is numerically solved. The channel is characterized by a length equal to 272 mm and by a height of 60mm; instead, the TEG has a length equal to 65 mm and a thickness of 8.5 mm. The metal foam is modelled assuming the local thermal equilibrium (LTE) hypothesis. The TEG is analyzed as a solid with an internal energy generation. Thermophysical properties of the exhaust gas are assumed equal to the ones of the air. The governing equations are considered with temperature independent thermophysical properties. The governing equations for gas, porous media and TEG are solved by finite volume method using the Ansys-Fluent code. The foam is characterized by a porosity of 0.92 and number of pores per inch equal to 5, 20, 40. Results are carried out for several mass flow rates of gas and different thicknesses of metal foam. Results are given in terms of temperature distributions, pressure drop, thermoelectric efficiency and power density for TEG for different exhaust gas flow rates and aluminum foam thicknesses.
机译:在本工作中,数值解决了部分填充有外部热电发电机(TEG)组件的通道泡沫铝中的二维稳态对流传热问题。通道的特征是长度等于272毫米,高度为60毫米;相反,TEG的长度等于65毫米,厚度为8.5毫米。假设局部热平衡(LTE)假设,对金属泡沫进行建模。 TEG被分析为具有内部能量生成的固体。假定废气的热物理性质等于空气的热物理性质。考虑到控制方程具有与温度无关的热物理性质。气体,多孔介质和TEG的控制方程使用Ansys-Fluent代码通过有限体积法求解。泡沫的特征在于孔隙率为0.92,每英寸的孔数等于5、20、40。对几种气体质量流量和不同厚度的金属泡沫进行了测试。在不同排气流量和泡沫铝厚度下,TEG的温度分布,压降,热电效率和功率密度方面均给出了结果。

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