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Numerical Study of Liquid Sloshing on Anti-sloshing Device Using Open Cell Metal Foams in Oil Tank

机译:油箱中开孔金属泡沫在防晃荡装置上晃荡的数值研究

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A new baffle structure design named open-cell metal foams baffle for anti-sloshing device in oil tank is presented in this study. Numerical simulation study on the liquid sloshing with various baffles is carried out using FLUENT with the volume-of-fluid (VOF) model. Four types of baffles were studied, namely non-baffle (type A), conventional parallelbaffle (type B), cross-baffle (type C) and open- cell metal foams baffles (type D). The oil velocity distribution, centroid and oil occupancy in the sloshing process is revealed in the case of vehicle speeding up and turning respectively. It is found that type D reduce velocity of oil, increase the value of oil occupancy in the suction pipe entrance of the oil tank and lower the centroid of oil obviously comparing with the other types. As for the same open-cell metal foam pore density, lower opencell metal foam porosity has much better effect of inhibition of liquid sloshing, but there is little deviation among different porosity for the absolute value. Moreover, according to the same porosity, the oil centroid can be lowered obviously with the increase of pore density. The results of type D show practical significance and referable guideline for baffles design to improve the safety and stability of vehicle.
机译:本研究提出了一种新的挡板结构设计,称为油箱防晃动装置的开孔金属泡沫挡板。使用流体体积(VOF)模型的FLUENT对各种挡板的液体晃荡进行了数值模拟研究。研究了四种类型的挡板,即非挡板(A型),常规平行挡板(B型),交叉挡板(C型)和开孔金属泡沫挡板(D型)。分别在车辆加速和转弯的情况下显示出晃动过程中的油速分布,质心和油位。发现与其他类型相比,D型降低了油的速度,增加了油箱吸油管入口处的油的占有率,并降低了油的质心。对于相同的开孔金属泡沫孔隙密度,较低的开孔金属泡沫孔隙率具有更好的抑制液体晃动的效果,但是不同孔隙率之间的绝对值偏差很小。此外,在相同的孔隙率下,随着孔隙密度的增加,油质心可以明显降低。 D型试验结果具有实用意义,可为提高汽车的安全性和稳定性提供合理的指导。

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