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APPLICATION OF SCARAB TO DESTRUCTIVE SATELLITE RE-ENTRIES

机译:Scarab在破坏性卫星重新进入的应用

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We have developed a software system which is able to predict the motion and destruction of space objects of arbitrary shape entering the Earth's atmosphere. It is named SCARAB ('Spacecraft Atmospheric Re-entry and Aerothermal Breakup'). The software has a modular structure, combining flight dynamics, aerodynamics, thermal analysis, and structural analysis. Each module uses engineering methods to keep the total computational expenditure for the complete simulation within acceptable limits. Thermal and structural analysis provide criteria for the destruction of a traced object. If there are fragments left after a destruction event, each part can be traced separately until all parts of the original spacecraft are destroyed or have reached ground. A first release of the software was finished in 1997, and a second, upgraded version has just been finished. Up to now simple test cases were treated with the software, mainly for functionality and verification testing. This includes comparison with in-flight measurements on a capsule, and comparison with other existing re-entry prediction tools. At present we are attacking more sophisticated cases, e.g. re-entry survivability studies of special interest to the aerospace industry (transfer vehicles, rocket stages), and cases of general interest (uncontrolled satellites, space station(s)). Preliminary results are presented in the paper.
机译:我们已经开发出一种软件系统,该系统能够预测的运动和进入地球大气层任意形状的空间物体的破坏。它被命名为圣甲虫(“航天器重返大气层和气动热解体”)。该软件具有模块化结构,结合飞行动力学,空气动力学,热分析和结构分析。每个模块使用的工程方法,以保持总的计算开支在可接受的范围之内的完全模拟。热和结构分析用于跟踪对象的破坏提供标准。如果存在破坏事件之后留下的片段,每个部分可单独直到原始航天器的所有部分被破坏或跟踪已达到地面。该软件的第一个版本是完成于1997年,第二,升级版刚刚过完。截至目前简单的测试例采用软件处理,主要用于功能性和验证测试。这包括在胶囊的飞行测试,并与其他现有的再入大气层预测工具比较比较。目前,我们正在进攻更复杂的情况下,例如特别感兴趣的航空航天工业(传送车,火箭级)的再入生存能力研究和普遍关注的案件(不受控制的卫星,空间站(S))。初步结果文件中提出。

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