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Quasi-static numerical simulation of the dynamic launching process for high-altitude balloon

机译:高空气球动态发射过程的准静态数值模拟

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摘要

In this paper, by establishing a set of mathematical models and computing methods, the numerical simulation of the ground dynamic launching process under the quasi-static assumption for a high-altitude balloon system is conducted to reveal the rich mechanical and geometric behaviors involved in it. The mathematical model includes the solution of the bubble shapes and the kinematic analysis, as well as the static model of the "membrane bundle system". Considering the middle and lower region of the bubble still meet the zero circumferential stress condition under the hydrostatic pressure gradient, the upper fully expanded shape generatrix is the same as the balloon generatrix of the ceiling height. The multiple shooting method combined with Sequential Quadratic Programming (SQP) is used to solve the lower partially expanded bubble generatrix. Based on the force balance equations of the microelement in "membrane bundle system", and considering the friction force in contact with the horizontal ground and the characteristics that the membrane bundle is a variable mass system along the arc length direction, the "multiple shooting method + SQP" method is still used to solve the shape and internal force of the "membrane bundle system" under two end geometric boundary conditions. In co-simulation, taking the dynamic launching process of the zero-pressure balloon system with the ceiling flight height of 30 km and hanging a load of 300 kg as the object, under the conditions of 1.5 m/s and 4.5 m/s wind speeds, the initial layout and the rising process of dynamic launching is calculated. Through the analyses of the simulation results, four stages of the rising process are concluded, namely, the stage of the "membrane bundle system" relaxation and falling to the ground, the longitudinal rising stage, the main rising stage, and the straightening stage. The geometry and force characteristics of the bubble and the "membrane bundle system" are discussed to provide a reference for the simulation of the actual high-altitude balloon ground dynamic launching testing. (C) 2021 Published by Elsevier Masson SAS.
机译:在本文中,通过建立一组数学模型和计算方法,进行了高空球囊系统的准静态假设下地面动态发射过程的数值模拟,以揭示其涉及的丰富的机械和几何行为。数学模型包括气泡形状和运动学分析的溶液,以及“膜束系统”的静态模型。考虑到气泡的中下区域仍然符合静压压力梯度下的零周向应力条件,上部完全膨胀的形状恒星与天花板高度的球囊恒星相同。多次拍摄方法与顺序二次编程(SQP)结合使用来解决较低部分扩展的气泡Persentrix。基于“膜束系统”中的微元素的力平衡方程,并考虑与水平接地接触的摩擦力和膜束沿弧形长度方向的变质量系统的特性,“多拍摄方法+ SQP“方法仍然用于解决两个末端几何边界条件下”膜束系统“的形状和内部力。在共模,采用零压力气球系统的动态发射过程,天花板飞行高度30公里,悬挂为300公斤的负荷,在1.5米/秒和4.5米/米风的情况下计算速度,初始布局和动态发射的上升过程。通过对模拟结果的分析,结束了上升过程的四个阶段,即“膜束系统”的阶段弛豫和落到地面,纵向上升阶段,主要上升阶段和矫直阶段。讨论了气泡和“膜束系统”的几何和力特性,为模拟实际高空球囊接地动态发射测试提供了参考。 (c)2021由Elsevier Masson SA发表。

著录项

  • 来源
    《Aerospace science and technology》 |2021年第10期|106830.1-106830.17|共17页
  • 作者单位

    Chinese Acad Sci Aerospace Informat Res Inst Beijing 100094 Peoples R China|Univ Chinese Acad Sci Beijing 100190 Peoples R China;

    Chinese Acad Sci Aerospace Informat Res Inst Beijing 100094 Peoples R China|Univ Chinese Acad Sci Beijing 100190 Peoples R China;

    Chinese Acad Sci Aerospace Informat Res Inst Beijing 100094 Peoples R China|Univ Chinese Acad Sci Beijing 100190 Peoples R China;

    Chinese Acad Sci Aerospace Informat Res Inst Beijing 100094 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    High-altitude balloon; Dynamic launching; Balloon shapes; Quasi-static analysis;

    机译:高空气球;动态发射;气球形状;准静态分析;

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