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Computational Model of the Chilldown and Propellant Loading of the Space Shuttle External Tank

机译:航天飞机外舱降温和推进剂载荷的计算模型

摘要

This paper describes a computational model of the chilldown and propellant loading of the Space Shuttle External Tank liquid oxygen and hydrogen tanks at Launch Complex 39B at Kennedy Space Center. The purpose of the computational model is to predict the time required to chilldown the entire assembly consisting of the ground system transfer line and propellant tanks in order to compare with observed loading times, to evaluate the feasibility of similar models developed for the Ares I Upper Stage. The model also predicts the history of inflow and outflow from the tank, pressure and temperature inside the tank, and heat leak through the walls. The Generalized Fluid System Simulation Program (GFSSP), a general purpose network flow analysis code, has been used to develop this computational model. The paper describes the simulation of the loading process for both tanks and compares the resulting predictions to measurements
机译:本文描述了肯尼迪航天中心39B号发射场外空梭外部储罐的液氧和氢罐的冷却和推进剂负荷的计算模型。计算模型的目的是预测冷却由地面系统传输线和推进剂坦克组成的整个组件所需的时间,以便与观察到的装载时间进行比较,以评估为Ares I Upper Stage开发的类似模型的可行性。该模型还预测罐的流入和流出的历史,罐内的压力和温度以及通过壁的热泄漏。通用流体系统仿真程序(GFSSP)是通用网络流量分析代码,已用于开发此计算模型。本文描述了两个储罐装载过程的仿真,并将预测结果与测量结果进行比较

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