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Three-dimensional simulation using fixed coarse-grid thermal-fluid scheme and conduction heat transfer scheme in distinct element method

机译:离散单元法中使用固定粗网格热流方案和传导传热方案的三维模拟

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摘要

Three-dimensional simulation using particle-thermal-fluid coupling scheme with a mixed Lagrangian-Eulerian approach is presented and the scheme is described by extending author's previous research [Y. Shimizu, 2004. "Fluid Coupling in PFC2D and PFC3D", numerical modeling in micromechanics via particle methods-2004, Proceeding of 2nd International PFC Conference, Balkema, 2004, pp. 281-287]. The scheme solves the continuity, Navier-Stokes (N-S) and thermal energy equations numerically in Eulerian Cartesian coordinates, then derives pressure, velocity vectors and temperature for each fixed cell by considering particle existence. On the other hand, driving forces and thermal energy from fluid are applied to the particles as external body forces and a source term in the force-displacement law and the heat transfer calculations, respectively. This paper describes the thermal scheme for both fluid and particles. Results of two- and three-dimensional simulations involving forced convective heat transfer by fluid and conduction heat transfer within particles are presented. (c) 2006 Elsevier B.V. All rights reserved.
机译:提出了使用拉格朗日-欧拉混合方法的粒子-热-流体耦合方案进行的三维模拟,并通过扩展作者先前的研究来描述该方案。 Shimizu,2004年。“ PFC2D和PFC3D中的流体耦合”,通过粒子方法在微力学中进行数值建模-2004年,第二届国际PFC会议论文集,巴尔科玛,2004年,第281-287页]。该方案在欧拉直角坐标系中数值求解连续性,Navier-Stokes(NS)和热能方程,然后通过考虑粒子的存在来导出每个固定单元的压力,速度矢量和温度。另一方面,来自流体的驱动力和热能分别作为外力施加到颗粒上,并作为力-位移定律和传热计算中的源项。本文介绍了流体和颗粒的热方案。提出了二维和三维模拟的结果,涉及流体的强制对流传热和颗粒内的传导传热。 (c)2006 Elsevier B.V.保留所有权利。

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