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Development of Flow and Heat Transfer Models for the Carbon Fiber Rope in Nozzle Joints of the Space Shuttle Reusable Solid Rocket Motor

机译:航天飞机可重复使用固体火箭发动机喷嘴接头碳纤维绳流动和传热模型的建立。

摘要

Methodologies have been developed for modeling both gas dynamics and heat transfer inside the carbon fiber rope (CFR) for applications in the space shuttle reusable solid rocket motor joints. Specifically, the CFR is modeled using an equivalent rectangular duct with a cross-section area, friction factor and heat transfer coefficient such that this duct has the same amount of mass flow rate, pressure drop, and heat transfer rate as the CFR. An equation for the friction factor is derived based on the Darcy-Forschheimer law and the heat transfer coefficient is obtained from pipe flow correlations. The pressure, temperature and velocity of the gas inside the CFR are calculated using the one-dimensional Navier-Stokes equations. Various subscale tests, both cold flow and hot flow, have been carried out to validate and refine this CFR model. In particular, the following three types of testing were used: (1) cold flow in a RSRM nozzle-to-case joint geometry, (2) cold flow in a RSRM nozzle joint No. 2 geometry, and (3) hot flow in a RSRM nozzle joint environment simulator. The predicted pressure and temperature history are compared with experimental measurements. The effects of various input parameters for the model are discussed in detail.
机译:已经开发出用于对碳纤维绳(CFR)内部的气体动力学和传热建模的方法论,用于航天飞机可重复使用的固体火箭发动机接头中。具体地,使用具有横截面积,摩擦系数和传热系数的等效矩形管道对CFR进行建模,以使该管道具有与CFR相同的质量流量,压降和传热速率。根据达西-福施海默定律推导出摩擦系数方程,并根据管道流量相关性获得传热系数。使用一维Navier-Stokes方程计算CFR内部气体的压力,温度和速度。为了验证和改进此CFR模型,已经进行了各种子尺度测试,包括冷流和热流。特别是,使用了以下三种类型的测试:(1)RSRM喷嘴-外壳接头几何形状中的冷流,(2)RSRM 2号喷嘴接头几何形状中的冷流,以及(3) RSRM喷嘴接头环境模拟器。将预测的压力和温度历史与实验测量值进行比较。详细讨论了模型的各种输入参数的影响。

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