有限尺寸重颗粒对方形管道湍流流动的影响

IF 3.4 3区 工程技术 Q1 MECHANICS 水动力学研究与进展:英文版 Pub Date : 2017-04-01 DOI:10.1016/S1001-6058(16)60737-0
Zhao-wu Lin (林昭武) , Xue-ming Shao (邵雪明) , Zhao-sheng Yu (余钊圣) , Lian-ping Wang (王连平)
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引用次数: 28

摘要

采用平行直接强迫虚拟域方法,对方形管道中颗粒流的全分辨数值模拟进行了研究。在摩擦雷诺数为150、颗粒体积分数为2.36%、颗粒直径为0.1风道宽度、屏蔽数为1.0 ~ 0.2时,研究了有限粒径重颗粒对平均二次流、平均流向速度、均方根速度波动和颗粒浓度分布的影响。结果表明,颗粒沉降破坏了平均二次涡的上下对称性,形成了较强的二次流循环,在低护盾数下,流体在体中心区域向下输送,沿侧壁向上输送。这种环流对平均流向速度的分布有显著的影响,与平面通道情况不同,平均流向速度的最大值出现在下半部管道中。随着护罩数量的减少,流动阻力增加,湍流强度降低。受平均二次流的影响,颗粒优先在底壁面中心堆积。观察到碰撞模型对结果有重要影响,但不会对结果产生质的改变。
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Effects of finite-size heavy particles on the turbulent flows in a square duct

A parallel direct-forcing fictitious domain method is applied in fully-resolved numerical simulations of particle-laden turbulent flows in a square duct. The effects of finite-size heavy particles on the mean secondary flow, the mean streamwise velocity, the root-mean-square velocity fluctuation, and the particle concentration distribution are investigated at the friction Reynolds number of 150, the particle volume fraction of 2.36%, the particle diameter of 0.1 duct width, and the Shields number ranging from 1.0 to 0.2. Our results show that the particle sedimentation breaks the up-down symmetry of the mean secondary vortices, and results in a stronger secondary-flow circulation which transports the fluids downward in the bulk center region and upward along the side walls at a low Shields number. This circulation has a significant impact on the distribution of the mean streamwise velocity, whose maximum value occurs in the lower half duct, unlike in the plane channel case. The flow resistance is increased and the turbulence intensity is reduced, as the Shields number is decreased. The particles accumulate preferentially at the face center of the bottom wall, due to the effect of the mean secondary flow. It is observed that the collision model has an important effect on the results, but does not change the results qualitatively.

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来源期刊
CiteScore
5.90
自引率
0.00%
发文量
1240
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