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太空推进器的功率法流体的微型电奥斯莫斯推进器
Jiaxuan Zheng1,2, Jialu Wang3, Yongjun Jian3
1College of Mathematics Science, Inner Mongolia Normal University, Hohhot 010022, China.
Micromachines
|May 27, 2023
概括
非牛顿假塑性流体显示出微电透推进器 (EOT) 的前景. 与传统的牛顿流体相比,这些流体可以改善或优化EOT的性能.
科学领域:
- 流体动力学 流体动力学
- 微流体学 微流体学
- 电动运动学 电动运动学
背景情况:
- 电透推进器 (EOT) 是微型推进系统.
- 传统的EOT使用牛顿流体,但它有局限性.
- 非牛顿流体,特别是动力定律流体,尚未被广泛研究为EOT中的推进剂.
研究的目的:
- 理论上研究使用非牛顿功率定律流体的电透推进器 (EOT) 的性能.
- 分析流动行为指数 (n) 对 EOT 性能的影响.
- 为了比较伪塑料 (n < 1) 和扩张性 (n > 1) 流体在微推进器应用中的适用性.
主要方法:
- 在微通道中对电透推进器的理论分析.
- 德拜-赫克尔线性化假设的应用.
- 分析解决方案使用过度波动正弦函数的近似方案.
- 评估电潜和电流速度.
主要成果:
- 导出了电潜和流速的分析解决方案.
- 探讨了推进器性能指标 (特定的冲动,推力,效率,推力与功率的比率).
- 性能高度依赖于流动行为指数和电动力学宽度.
- 非牛顿假塑性流体表现出优越或优化的性能特征.
结论:
- 非牛顿假塑性流体非常适合微型电透推进器.
- 这些流体可以克服与牛顿流体观察到的性能缺陷.
- 该研究为下一代微型推进系统的设计和优化提供了宝贵的见解.
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