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Numerical study of heat transfer enhancement in asphalt collector using CuO nanofluid

机译:CuO纳米流体增强沥青捕集器传热的数值研究

摘要

This study investigates the heat transfer enhancement in asphalt collector by using CuO nanofluid. In this study the first approach is based on increasing the heat gain which is captured by solar energy on asphalt pavement. The second approach is related to accelerate the period of snow melting. Numerical simulation method has been used to predict the temperature distribution in the asphalt collector. The study was conducted at unsteady state, laminar fluid flow with small and large scale of geometry. Certain boundary conditions and assumptions to solve the governing equations were implemented by using finite volume method. Computational fluid dynamics software involves ANSYS FLUENT 14.0 was employed to perform the investigation numerically. Using nanofluid is considered as a positive way to improve the performance of melting system. The CuO Nanofluid from 1 to 4% volume fraction with particle diameter of 50 nm dispersed in a base fluid (water) were used to improve the heat transfer of asphalt collector and thus resulting in an augmentation of efficiency of asphalt collector. The rise in temperature of nanofluid as a result of flow through asphalt pavement was used as an indicator of efficiency enhancement of heat capture. The results of simulation for both small and large scale geometries show that the use of nanofluid can significantly enhance the efficiency of heat capture by bringing high amount of solar energy out. It is also noticed that the asphalt collector provides us a better alternative method for snow melting. Asphalt pavement temperature distribution was evaluated and the non-uniform temperature in the asphalt pavement is noticeable.
机译:本研究研究了使用CuO纳米流体增强沥青收集器中的传热。在这项研究中,第一种方法是基于增加沥青路面上的太阳能所吸收的热量。第二种方法与加速融雪期有关。数值模拟方法已被用于预测沥青收集器中的温度分布。该研究是在不稳定状态下进行的,层流为小尺寸和大尺寸几何形状。使用有限体积法实现了求解控制方程的某些边界条件和假设。计算流体动力学软件涉及ANSYS FLUENT 14.0,用于进行数值研究。使用纳米流体被认为是改善熔融系统性能的积极方法。使用体积分数为1%至4%的CuO纳米流体(粒径为50 nm)分散在基础流体(水)中,以改善沥青收集器的热传递,从而提高沥青收集器的效率。由于流经沥青路面而导致的纳米流体的温度升高被用作提高吸热效率的​​指标。小型和大型几何图形的模拟结果均表明,使用纳米流体可以通过带走大量太阳能来显着提高热捕获效率。还应注意,沥青收集器为我们提供了一种更好的融雪方法。对沥青路面温度分布进行了评估,发现沥青路面温度不均匀。

著录项

  • 作者

    Hashim Ghasaq Adheed;

  • 作者单位
  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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