标题: | 卫星推进器引致污染及冲击影响分析软体发展(II) Development of a Dsmc Code for Analyzing the Contamination and Plume Impingement on Spacecraft (II) |
作者: | 吴宗信 国立交通大学{高效率能源技术中心} |
关键字: | 直接蒙地卡罗法;卫星;direct simulation Monte Carlo;satellite |
公开日期: | 2004 |
摘要: | 直接蒙地卡罗模拟法( Direct Simulation Monte Carlo)至今已被公认为研究过渡流体的最佳模拟工具.此方法最大的优点是可以直接应用微观物理模型模拟来模拟-气流场,其应用包含太空推进器、控制卫星的喷流及相关高真空度的应用等等.因此稀薄气体理论(high Knudsen number)的应用在现今的科学及工业上的发展是非常重要的. 然而直接蒙地卡罗模拟法在过去并无受到应有的重视,主要的原因是由于计算时间过长.故发展具变时步方法以及动态负载的直接蒙地卡罗法可大量减少模拟的计算时间. 本计画的目标,便是发展一套直接模拟蒙地卡罗(DSMC)法于丛集式电脑,来分析推进次系统推进器的喷流引致污染及冲击影响的模拟分析软体.计划期间共计二年.第一年计画已顺利完成,已发展成功一个三维直接蒙地卡罗模拟法程式,结合变时步方法(variable time-step method)及平行计算之动态负载平衡(Dynamic Load Balancing)技巧来缩短计算时间.并利用此程式初步计算中华卫星三号之推进器喷流引致污染及冲击情形. 本年度,将利用发展完成的直接蒙地卡罗模拟法程式结合发展一套便利的输入资料图形界面、科学视算后处理、平行化处理,以应用于丛集式电脑系统上.终端使用者只需输入所需资料,便可进行数值模拟,并经由显示器观察正在进行的分析状况.同时,协助太空计画室建立一套可执行第一年发展的直接蒙地卡罗法程式之丛集式电脑系统(12-node).最后并将负责训练相关工程师使用该套完整分析软体. It is well recognized that DSMC is the most efficient method to study the gas flows in transitional flow regime. The major advantage of this method is that it can easily incorporate the particle nature of physics, which is crucial in several research disciplines, including the spacecraft reentry, the plume impingement from control thrusters on satellite, and the relative applications of high vacuum, to name a few. Each of these distinct applications of high Knudsen number flows is now of practical scientific and engineering importance. However, application of the DSMC method is limited due to its prohibitively high computational cost in the near-continuum flow regime. Thus, to develop a DSMC code combining variable-time step (VTS) method and dynamic load balancing (DLB) in parallel implementation can save huge amount of computational time. The objectives of this project are to develop an accurate and efficient DSMC code and to apply to the analysis of the plume impingement on spacecraft on PC cluster system. The proposed research is planned for a 2-year period. In the first year, we have successfully developed a 3-D parallel direct simulation Monte Carlo code using variable-time step method and dynamic load balancing technique to reduce the computational time dramatically. ROCSat-3 was used as an example model to demonstrate its capability in analyzing the plume impingement on spacecraft. In the current proposal, it is proposed to integrate a simulation system including a preprocessor for input data, DSMC code and a postprocessor for visualization the results. At the same time, we will help NSPO to set up a 12-node PC cluster system. Finally, we will implement the developed software on the PC cluster system and train the engineers to use the analysis tool to analyze plume impingement on spacecraft. |
官方说明文件#: | 93-NSPO(A)-PC-FA04-01 |
URI: | http://hdl.handle.net/11536/91555 https://www.grb.gov.tw/search/planDetail?id=1036110&docId=197678 |
显示于类别: | Research Plans |
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