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The Method for Optimum Design of Water Rocket Flight Stability Performance Conditions Using CAE with T Method and Robust Parameter Design

机译:具有T法和鲁棒参数设计的CAE使用CAE水火箭飞行稳定性性能条件优化设计方法

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A water rocket is a rocket system that obtains thrust by injecting water with compressed air of up to about 8 atmospheres. It is usually manufactured using a pressure-resistant PET bottle. The mechanical elements and principles contained in the water rocket have much in common with the actual small rocket system, and are suitable as educational and research teaching materials in the field of mechanics. Especially in the field of disaster prevention and mitigation, the use of water rockets is being researched and developed as a rescue tool in the event of a flood or earthquake as a disaster countermeasure. However, since the water rocket is a flying object based on the mechanical principle, it is important to ensure the accuracy and stability of the flight path. In this paper, a mechanical simulator is developed with a numerical calculation program based on the mechanical consideration of water rocket flight performance. In addition, the correlation between the flight distance obtained in the simulation and the estimated flight distance is analyzed by applying a multivariate analysis method and verifying the validity of the flight distance calculated from the result. Based on the verification results, we will apply a statistical optimization method to approach the optimization of flight stability performance conditions for water rockets.
机译:水火箭是一种火箭系统,通过用高达约8个大气压的压缩空气注入水来获得推力。通常使用耐压PET瓶制造。水火箭中所含的机械元件和原理与实际的小火箭系统有很大的共同之处,并且适合作为力学领域的教育和研究教材。特别是在防灾和缓解领域,在洪水或地震发生时,正在研究和开发水箭的使用作为灾难对策。然而,由于水火箭是基于机械原理的飞行物体,因此确保飞行路径的准确性和稳定性非常重要。本文采用了基于水火箭飞行性能的机械考虑的数值计算计划开发了机械模拟器。另外,通过应用多变量分析方法并验证从结果计算的飞行距离的有效性来分析模拟中获得的飞行距离与估计飞行距离之间的相关距离之间的相关性。根据验证结果,我们将应用统计优化方法,以实现水火箭稳定性性能条件的优化。

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