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Effects of curvature on rarefied gas flows between rotating concentric cylinders

机译:曲率对旋转同心圆柱之间稀薄气体流动的影响

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摘要

The gas flow between two concentric rotating cylinders is considered in order to investigate non-equilibrium effects associated with the Knudsen layers over curved surfaces. We investigate the nonlinear flow physics in the near-wall regions using a new power-law (PL) wall-scaling approach. This PL model incorporates Knudsen layer effects in near-wall regions by taking into account the boundary limiting effects on the molecular free paths. We also report new direct simulation Monte Carlo results covering a wide range of Knudsen numbers and accommodation coefficients, and for various outer-to-inner cylinder radius ratios. Our simulation data are compared with both the classical slip flow theory and the PL model, and we find that non-equilibrium effects are not only dependent on Knudsen number and accommodation coefficient but are also significantly affected by the surface curvature. The relative merits and limitations of both theoretical models are explored with respect to rarefaction and curvature effects. The PL model is able to capture some of the nonlinear trends associated with Knudsen layers up to the early transition flow regime. The present study also illuminates the limitations of classical slip flow theory even in the early slip flow regime for higher curvature test cases, although the model does exhibit good agreement throughout the slip flow regime for lower curvature cases. Torque and velocity profile comparisons also convey that a good prediction of integral flow properties does not necessarily guarantee the accuracy of the theoretical model used, and it is important to demonstrate that field variables are also predicted satisfactorily.
机译:为了研究与弯曲表面上的克努森层有关的非平衡效应,考虑了两个同心旋转气缸之间的气流。我们使用一种新的幂律(PL)壁缩放方法研究了近壁区域中的非线性流动物理学。该PL模型通过考虑对分子自由路径的边界限制效应,将近壁区域的克努森层效应纳入其中。我们还报告了新的直接模拟蒙特卡洛结果,涵盖了广泛的克努森数和调节系数,以及各种内外圆柱半径比。我们的模拟数据与经典滑流理论和PL模型进行了比较,我们发现非平衡效应不仅取决于Knudsen数和调节系数,而且还受表面曲率的显着影响。就稀疏度和曲率效应,探讨了两种理论模型的相对优缺点。 PL模型能够捕获与Knudsen层相关的一些非线性趋势,直至早期过渡流态。本研究也阐明了经典滑流理论的局限性,即使在较高曲率测试案例的早期滑流状态下,尽管该模型在较低曲率情况下在整个滑流状态下均显示出良好的一致性。转矩和速度曲线的比较还表明,对整体流动特性的良好预测并不一定能保证所用理论模型的准确性,重要的是要证明对场变量的预测也令人满意。

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