通过符合规则的曲线管道进行纳米流体流动中性优化的三维研究:一种药物输送和治疗应用程序
F M Allehiany1, Arshad Riaz2, Sadia Shoukat2
1Mathematics Department, Faculty of Sciences, Umm Al-Qura University, Mecca, Saudi Arabia.
Heliyon
|January 12, 2024
概括
这项研究分析了3D纳米流体在柔性曲线管道中的流动,揭示了墙壁弹性提高了速度. 降低管道面积比可以最大限度地减少的产生,提高生物医学应用的效率.
科学领域:
- 流体动力学 流体动力学
- 纳米技术 纳米技术
- 热传递是热传递的过程.
背景情况:
- 传统研究侧重于二维纳米流体流动,对复杂的几何形状缺乏准确性.
- 了解3D流动力学对于优化微流体学和生物医学设备等系统至关重要.
研究的目的:
- 为了研究纳米流体在柔性曲线管道中的3D环静电流.
- 在特定的物理约束下分析银和铜纳米粒子的态行为.
- 为了确定管道几何和墙壁特性对纳米流体流动和生成的影响.
主要方法:
- 使用扰动技术与NDSolve命令用于准确的解决方案.
- 假设长波长和低雷诺兹数为物理约束.
- 使用剩余错误表和图表进行了全面的错误分析.
主要成果:
- 纳米流体的速度与墙壁弹性直接成比例,与每单位体积的质量成反比例.
- 降低管道的面积比,通过增加阻尼力来降低生成.
- 增加相对于宽度的通道高度可以最大限度地减少不必要的流球.
结论:
- 3D分析提供了一个更准确的描述纳米流体在曲管道的行为.
- 优化管道几何和墙壁弹性可以控制纳米流体流动并减少能量损失.
- 这些发现对药物输送,微流体学和医疗内镜有影响.
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