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建立了用于过滤燃烧数值模拟的大孔穴多孔介质3-D均质网络模型.利用该模型研究了四组不同参数多孔介质内压力梯度与渗流速度之间的变化规律.数值模拟与实验结果吻合得很好.数值计算表明:相对于孔隙率,孔径亦即渗透率对压力梯度的影响更为显著;入口效应仅局限在距入口界面2~3个单元长度内,几何参数和渗流速度对其影响可以忽略;多孔介质的存在抑制了湍动能的发展,在受入口效应影响的区域,湍动能衰减得比较剧烈,之后变化趋缓,最终与耗散率形成动态平衡.

参考文献

[1] 东明 .大孔隙率多孔介质内湍流流动和质量弥散的数值研究[D].大连理工大学,2009.
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[3] Marcos H.J.Pedras;Marcelo J.S.de Lemos .On the mathematical description and simulation of turbulent flow in a porous medium formed by an array of elliptic rods[J].Journal of Fluids Engineering: Transactions of the ASME,2001(4):941-947.
[4] K. Boomsma;D. Poulikakos .On the effective thermal conductivity of a three- dimensionally structured fluid-saturated metal foam[J].International Journal of Heat and Mass Transfer,2001(4):827-836.
[5] Hall MJ.;Hiatt JP. .MEASUREMENTS OF PORE SCALE FLOWS WITHIN AND EXITING CERAMIC FOAMS[J].Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow,1996(6):433-440.
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