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轴对称Boltzmann模型方程统一算法与空天飞行环境喷管流动模拟

李凡 李志辉 李中华 罗万清 陈爱国

空气动力学学报2024,Vol.42Issue(2):47-55,9.
空气动力学学报2024,Vol.42Issue(2):47-55,9.DOI:10.7638/kqdlxxb-2023.0064

轴对称Boltzmann模型方程统一算法与空天飞行环境喷管流动模拟

Unified algorithm for axisymmetric Boltzmann model equation and simulation of nozzle flow in aerospace flight environment

李凡 1李志辉 1李中华 2罗万清 2陈爱国2

作者信息

  • 1. 北京流体动力科学研究中心,北京 100011||国家计算流体力学实验室,北京 100191
  • 2. 中国空气动力研究与发展中心 超高速空气动力研究所,绵阳 621000
  • 折叠

摘要

Abstract

The influence of main/side jet and plume exists in a wide area around the intercepting maneuvering aircraft,and the traditional Navier-Stokes(N-S)equation cannot simulate the flow near the outlet of the engine nozzle expansion well,so a new method is needed to deal with the whole flow regime flow problem.In order to solve this problem,the Boltzmann model equation governing the flow in an axisymmetric nozzle under the rarefied environment of different Knudsen numbers is mathematically derived,and the numerical scheme and gas kinetic unified algorithm for the model equation are established.Numerical results for steady/unsteady rotating flow between two coaxial cylinders,as well as flow in an axisymmetric nozzle,both agree with existing studies,which verifies the reliability of the present algorithm in the whole flow regime.By comparing with the low-density wind tunnel experiment,the plume structure in the core area of the nozzle outlet and the pressure profile along the plume axis from the simulation show good agreement with the experiment,which suggests that the proposed algorithm can effectively solve the problem of mixing in the multi-flow regime from the nozzle compression section to the expansion section,especially in the low-pressure vacuum environment near the outlet.

关键词

轴对称喷管流动/气体动理论统一算法/Boltzmann模型方程/旋转库埃特流动/羽流环境

Key words

axisymmetric nozzle flow/gas-kinetic unified algorithm/Boltzmann model equation/rotational Couette flow/plume environment

分类

数理科学

引用本文复制引用

李凡,李志辉,李中华,罗万清,陈爱国..轴对称Boltzmann模型方程统一算法与空天飞行环境喷管流动模拟[J].空气动力学学报,2024,42(2):47-55,9.

基金项目

国家自然科学基金(11902339,11325212) (11902339,11325212)

基础加强计划重点项目(2019JCJQZD17701) (2019JCJQZD17701)

空气动力学学报

OA北大核心CSTPCD

0258-1825

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