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Structural Weight Estimation for Launch Vehicles, SAWE Paper No. 3201 Category No. 23

机译:发动车辆的结构重量估计,Sawe论文3201类第23类

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This paper describes some of the work in progress to develop automated structural weight estimation procedures within the Vehicle Analysis Branch (VAB) of the NASA Langley Research Center. One task of the VAB is to perform system studies at the conceptual and early preliminary design stages on launch vehicles and in-space transportation systems. Some examples of these studies for Earth to Orbit (ETO) systems are the Future Space Transportation System [1], Orbit On Demand Vehicle [2], Venture Star [3], and the Personnel Rescue Vehicle[4]. Figure [1] shows some of the concepts the different vehicle types encountered in these studies. Structural weight calculation for launch vehicle studies can exist on several levels of fidelity. Typically historically based weight equations are used in a vehicle sizing program. Many of the studies in the vehicle analysis branch have been enhanced in terms of structural weight fraction prediction by utilizing some level of off-line structural analysis to incorporate material property, load intensity, and configuration effects which may not be captured by the historical weight equations. Modification of Mass Estimating Relationships (MER's) to assess design and technology impacts on vehicle performance are necessary to prioritize design and technology development decisions. Modern CAD/CAE software, ever increasing computational power and platform independent computer programming languages such as JAVA provide new means to create greater depth of analysis tools which can be included into the conceptual design phase of launch vehicle development. Commercial framework computing environments provide easy to program techniques which coordinate and implement the flow of data in a distributed heterogeneous computing environment. It is the intent of this paper to present a process in development at NASA LaRC for enhanced structural weight estimation using this state of the art computational power.
机译:本文介绍了一些在开发NASA兰利研究中心的车辆分析处(VAB)自动结构重量估算程序进度的工作。在VAB的一个任务是在对运载火箭和空间运输系统的概念和早期初步设计阶段进行系统的研究。这些研究对于地球轨道的一些实例(ETO)系统是未来的空间运输系统[1],轨道按需车辆[2],创业之星[3],和人事救援车[4]。图[1]示出了一些在这些研究中所遇到的不同的车辆类型的概念。结构重量计算运载火箭的研究可以在逼真的几个层次存在。典型地,基于历史重量方程在车辆上浆程序使用。许多车辆分析分支的研究已经通过利用离线结构分析的某种程度的结合材料特性,负荷强度在结构重量分数预测方面增强的,和配置的效果可能不通过历史重量方程被捕获。大众估算关系的修改(MER的),以评估对车辆性能的设计和技术的影响是必要的设计和技术开发决策的优先次序。现代CAD / CAE软件,不断提高的计算能力和平台无关的计算机编程语言,如JAVA提供新的手段来创建可纳入运载火箭发展的概念设计阶段的分析工具更深入。商业框架计算环境到程序技术,其协调和执行数据以分布式的异构计算环境中的流动提供容易。这是本文的意图在NASA LARC呈现在开发一种用于使用本领域的计算能力的这种状态下增强的结构重量估计。

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