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Thermal-Flow Code for Modeling Gas Dynamics and Heat Transfer in Space Shuttle Solid Rocket Motor Joints

机译:用于模拟航天飞机固体火箭发动机接头中气体动力学和传热的热流代码

摘要

A new, thermal-flow simulation code, called SFLOW. has been developed to model the gas dynamics, heat transfer, as well as O-ring and flow path erosion inside the space shuttle solid rocket motor joints by combining SINDA/Glo, a commercial thermal analyzer. and SHARPO, a general-purpose CFD code developed at Thiokol Propulsion. SHARP was modified so that friction, heat transfer, mass addition, as well as minor losses in one-dimensional flow can be taken into account. The pressure, temperature and velocity of the combustion gas in the leak paths are calculated in SHARP by solving the time-dependent Navier-Stokes equations while the heat conduction in the solid is modeled by SINDA/G. The two codes are coupled by the heat flux at the solid-gas interface. A few test cases are presented and the results from SFLOW agree very well with the exact solutions or experimental data. These cases include Fanno flow where friction is important, Rayleigh flow where heat transfer between gas and solid is important, flow with mass addition due to the erosion of the solid wall, a transient volume venting process, as well as some transient one-dimensional flows with analytical solutions. In addition, SFLOW is applied to model the RSRM nozzle joint 4 subscale hot-flow tests and the predicted pressures, temperatures (both gas and solid), and O-ring erosions agree well with the experimental data. It was also found that the heat transfer between gas and solid has a major effect on the pressures and temperatures of the fill bottles in the RSRM nozzle joint 4 configuration No. 8 test.
机译:一种新的热流模拟代码,称为SFLOW。通过结合商用热分析仪SINDA / Glo,已经开发出了用于模拟航天飞机固体火箭发动机接头内部的气体动力学,传热以及O形圈和流路腐蚀的模型。 SHARPO是Thiokol Propulsion开发的通用CFD代码。对SHARP进行了修改,以便可以考虑摩擦,传热,质量增加以及一维流中的微小损失。在SHARP中,通过求解与时间有关的Navier-Stokes方程,可以在SHARP中计算出燃烧气体中的压力,温度和速度,而固体中的热传导由SINDA / G建模。这两个代码通过固-气界面处的热通量耦合。给出了一些测试案例,SFLOW的结果与精确的解决方案或实验数据非常吻合。这些情况包括:摩擦力很重要的范诺流,气体和固体之间的传热很重要的瑞利流,由于固体壁的侵蚀而增加质量的流,瞬态体积排气过程以及一些瞬态一维流分析解决方案。此外,SFLOW用于对RSRM喷嘴接头4次尺度热流测试进行建模,并且预测的压力,温度(气体和固体)以及O形圈腐蚀与实验数据非常吻合。还发现在RSRM喷嘴接头4配置8号测试中,气体和固体之间的热传递对填充瓶的压力和温度有重大影响。

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