颗粒温度控制 振动颗粒流动的局部风学
Mitchell G Irmer1, Emily E Brodsky2, Abram H Clark1
1Naval Postgraduate School, Department of Physics, Monterey, California 93943, USA.
Physical review letters
|February 14, 2025
概括
我们展示了密集的颗粒流动的局部气流学. 颗粒温度降低了摩擦和织物异构性,允许对剪切,振动的颗粒流进行连续描述.
科学领域:
- 物理 物理学 物理
- 工程 工程师 工程师 工程师
- 材料科学 是一种材料科学.
背景情况:
- 密集的颗粒流在自然和工业中无处不在.
- 了解它们的风病学对于预测它们的行为至关重要.
- 颗粒温度是一种建议的风湿学控制方法,但难以分离.
研究的目的:
- 为了证明在剪切和振动下密集的颗粒流动的局部气质学.
- 调查颗粒温度在控制流量特性中的作用.
- 为剪切,振动颗粒流程开发一个连续模型.
主要方法:
- 在剪切和振动下颗粒组装的数值模拟.
- 分析局部速度波动和颗粒温度.
- 为颗粒温度开发热方程模型.
主要成果:
- 摩擦被局部速度波动 (颗粒温度) 减少.
- 发现了与摩擦,颗粒温度和剪切率相关的局部形学.
- 减少摩擦与减少的织物异性相关.
- 颗粒温度可以通过散热的热方程来建模.
结论:
- 基于颗粒温度的局部气质学为模拟密集的颗粒流提供了完整的封闭.
- 颗粒温度的热方程允许完全局部连续描述.
- 这种方法为建模剪切,振动颗粒流提供了总体策略.
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