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Numerical investigation of the real and ideal gap profiles in the calculation of the pressure distortion coefficient and piston fall rate of an LNE 200 MPa pressure balance

机译:LNE 200 MPa压力平衡仪压力畸变系数和活塞下降率计算中真实和理想间隙轮廓的数值研究

摘要

This paper aims to investigate, by means of numerical simulation, the effect of gap profiles on the calculation of the pressure distortion coefficient (λ) and the piston fall rate (vf) of two piston-cylinder units used in a Laboratoire National de Métrologie et d'Essais (LNE) 200 MPa pressure balance. The ideal mean gap width between the piston and the cylinder was obtained after measuring the piston fall rate at a low pressure, while the piston radius was obtained from the cross-float experiments at a lowpressure. The real gap width was obtained from dimensional measurements by measuring the diameter and straightness of the piston and the cylinder. The piston and cylinder radial distortions were calculated using the finite element method. The pressure distribution in the gap was calculated on the basis of the Navier-Stokes equation for Newtonian viscous flow. The results such as pressuredistributions, radial distortions, the pressure distortion coefficient and the piston fall rate were presented for the free-deformation operating mode of the assemblies. The calculation resulted in ideal and real gap profiles indicating that the average pressure distortion coefficient was in good agreement within 0.017 × 10-6 MPa-1 and the calculations of piston fall rate depended on the gap profile especially at the inlet and outlet zones of the engagement length.
机译:本文旨在通过数值模拟研究间隙曲线对国家实验室等所使用的两个活塞缸单元的压力畸变系数(λ)和活塞下降率(vf)的计算的影响。 d'Essais(LNE)200兆帕压力平衡。在低压下测量活塞的下降速度后,可获得活塞与气缸之间的理想平均间隙宽度,而在低压下,通过横浮实验可得出活塞半径。实际的间隙宽度是通过测量活塞和气缸的直径和直线度从尺寸测量中获得的。活塞和气缸的径向变形是使用有限元方法计算的。根据牛顿粘性流的Navier-Stokes方程计算间隙中的压力分布。给出了组件自由变形运行模式下的压力分布,径向变形,压力变形系数和活塞下降率等结果。计算得出理想的和实际的间隙轮廓,表明平均压力畸变系数在0.017×10-6 MPa-1之内吻合良好,而活塞下降率的计算取决于间隙轮廓,尤其是在进气口和出口区域订婚长度。

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