悬停旋翼CFD模拟的改进初始和边界条件

Feilin Jia, Qiqi Wang, P. Spalart
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引用次数: 0

摘要

新的流场起源于Spalart在2012年发表的一篇论文(参考文献1),该论文解决了由动量源(如悬停转子或静态射流)引起的远场行为。该模型将夹带纳入湍流远尾流,取代了基于汇场的历史悠久的模型。本文通过对XV-15型旋翼在集体俯仰角下悬停飞行状态下的非定常仿真,研究了基于上述远场模型修正版的新的初始条件和边界条件。= 10 ?。这个想法是在它下面注入一个近似旋翼尾迹的东西。结果表明,与自由流初始条件相比,基于远场模型的新初始条件能快速建立低速诱导流,并能更快地实现推力和转矩收敛到统计稳态。新的初始条件可以有效地冲掉混沌的启动涡,防止模拟结果中自由流初始条件下叶片-涡相互作用引起的推力振荡。在多个简化计算域中,给出了将改进的远场模型作为悬停飞行远场边界条件的结果。虽然新边界条件对推力和扭矩的收敛没有明显的加速作用,但由于边界处有规定的速度场,其尾迹的发展速度比自由流边界条件快得多。这种新的初始和边界条件有利于多旋翼飞机的仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved Initial and Boundary Conditions for Hovering Rotor CFD Simulations
The new flow fields originate in a 2012 paper by Spalart (Ref. 1), which addresses the far-field behavior induced by a momentum source, such as a hovering rotor or a static jet. This model incorporates entrainment into the turbulent far wake, and supersedes the time-honored model based on a sink field. In the present study, a new initial condition as well as boundary condition based on a modified version of the above far-field model are investigated by unsteady simulations of the XV-15 rotor in hovering flight condition at collective pitch angle ? = 10?. The idea is to inject an approximation to the rotor's wake under it. From our results, compared to the freestream initial condition, the far-field model based new initial condition can quickly establish the low-speed induced flow and achieve faster convergence of thrust and torque to statistically steady state. The chaotic starting vortex can be effectively flushed out by the new initial condition to prevent the oscillations of thrust due to blade-vortex interaction shown in the simulation from the freestream initial condition. Results of the modified far-field model as a far-field boundary condition to hovering f light in multiple reduced computational domains are also presented. Although the new boundary condition doesn't show evident speedup in convergence of thrust and torque, its wake can be developed much faster than the freestream boundary condition due to its prescribed velocity field at the boundary. This new initial and boundary condition could be beneficial to simulations of multi-rotor aircraft.
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