热生成/吸收对自然对流传热传递的效果在一个充满纳米流体的波形三角腔中
Tarikul Islam1,2, Md Nur Alam3, Shafiullah Niazai4
1CMUP, University of Porto, Porto, Portugal.
Scientific reports
|December 1, 2023
概括
这项研究用铜-水纳米流体在波形外中数量研究热传递. 纳米粒子特性和热量产生显著影响热性能,布朗运动和更小的尺寸增强热传输.
科学领域:
- * 流体动力学 流体动力学
- * 热传递 热传递 热传递
- * 纳米技术的使用
背景情况:
- * 自由对流和热传输在各种工程应用中至关重要.
- *纳米流体与基础流体相比,具有增强的热性能.
- *围的几何形状和边界条件显著影响热传递现象.
研究的目的:
- *以数值方式研究热量产生/吸收对自由对流和温度传输的影响.
- * 分析纳米粒子在波形三角外中的布朗运动的影响.
- * 探索诸如哈特曼数,雷利数和纳米粒子特征等各种参数对传热的影响.
主要方法:
- *使用加勒金加权剩余有限元素技术进行数值模拟.
- *使用铜-水 (Cu-H2O) 纳米流体作为工作介质.
- *通过同热轮,流线和平均努塞尔特数分析结果.
主要成果:
- * 增加的雷利数和纳米粒子体积分数增强了温度传输速率.
- *较高的哈特曼数减少了热传递.
- *布朗运动,纳米粒子形状 (叶片与球形),尺寸 (100nm与10nm) 和波浪参数显著影响热性能.
结论:
- *纳米粒子特性,包括布朗运动和尺寸,对于优化热传输至关重要.
- *热生成/吸收参数在控制温度分布和热传递速率方面发挥着至关重要的作用.
- *这项研究提供了关于使用纳米流体在波形外中增强热性能的见解.
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