王勇, 陈鹏, 耿子海, 王万波, 李士伟. 基于 PIV 速度场测量重构压强场的研究进展[J]. 实验流体力学, 2014, (4): 1-8,24. DOI: 10.11729/syltlx20140012
引用本文: 王勇, 陈鹏, 耿子海, 王万波, 李士伟. 基于 PIV 速度场测量重构压强场的研究进展[J]. 实验流体力学, 2014, (4): 1-8,24. DOI: 10.11729/syltlx20140012
Wang Yong, Chen Peng, Geng Zihai, Wang Wanbo, Li Shiwei. Bevelopment of PIV-based instantaneous pressure determination[J]. Journal of Experiments in Fluid Mechanics, 2014, (4): 1-8,24. DOI: 10.11729/syltlx20140012
Citation: Wang Yong, Chen Peng, Geng Zihai, Wang Wanbo, Li Shiwei. Bevelopment of PIV-based instantaneous pressure determination[J]. Journal of Experiments in Fluid Mechanics, 2014, (4): 1-8,24. DOI: 10.11729/syltlx20140012

基于 PIV 速度场测量重构压强场的研究进展

Bevelopment of PIV-based instantaneous pressure determination

  • 摘要: 利用 PIV 测量得到的速度场数据重构空间压强场是一种新颖的压强测量方法。目前国外的一些仿真计算和风洞实验已经证明了该方法的可行性和有效性。本文首先详细介绍了基于 PIV 速度场测量重构压强场的基本原理---两种压强梯度计算方法(拉格朗日方法和欧拉方法)和两种压强积分方法(平面 Poisson 法和直接空间积分法),然后从速度场测量、压强梯度计算和压强分布计算3个方面综述了基于 PIV 速度场测量重构空间压强场的关键技术及相关的研究进展,最后从 PIV 速度测量的改进、参数的优化设置、算法的改进与创新、探索并完善3D压强分布计算、可压缩流动条件下的压强重构技术等5个方面探讨了该方法的发展方向,以期引起国内同行对该技术的高度重视并为其进一步发展提供一定的参考。

     

    Abstract: Instantaneous planar pressure field calculation based on the velocity fields obtained from partical image velocimetry (PIV)measurement data is a new technique for the measurement of pressure field.Recent research results acquired in computation fluid dynamics and wind tunnel tests abroad have demonstrated the feasibility and significance of PIV-based instantaneous pres-sure determination.This paper presents a description of the fundamental operation principles of the methods addressing the different procedures for obtaining the local pressure gradient by local-ly applying the incompressible momentum equation (Lagrangian form and Eulerian form)and for the subsequent spatial integration to evaluate the planar pressure field from these pressure gradi-ents (an in-plane Poisson formulation and direct spatial integration).The influence of the viscous term in the incompressible momentum equation is discussed,with the conclusion that its effect on the local pressure gradient determination can generally be neglected and will therefore be omitted safely.In the second part of the present paper,some key technologies and current developments of the PIV-based instantaneous pressure determination are reported.It is revealed that the overall uncertainty in determining the error in pressure is dominated by errors in velocity measurement and thus the first key point to the success of determining the instantaneous planar pressure field is to obtain faithful velocity field from PIV as soon as possible.A comparative assessment of the Lagrangian approach and the Euleiran approach to determine the local pressure gradient is consid-ered,which would promote the use of the Lagrangian approach though they are found to have dif-ferent merits and demerits.For the two different methods to evaluate the pressure in a plane from the estimated pressure gradient,it is illustrated that the Poisson approach is clearly better than the direct spatial integration approach since the latter introduces a dependence on the inte-gration path and shows a ‘memory’effect in the marching direction.Finally,several potential research directions for the practial application of the PIV-based instantaneous pressure determina-ton are discussed,including the improvement of the velocity filed measurement from PIV,the i-dentification of the key parameters that need to be taken into account and the optimization of them,the innovation of the methods to obtain the pressure gradient and the pressure field itself, and the reconstrution of the pressure field in 3D flow and compressible flow,etc.

     

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