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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Dual-MRT lattice Boltzmann method combined with experimental measurements of nanofluid's properties for analysis of fin-orientation effect on natural convection heat transfer
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Dual-MRT lattice Boltzmann method combined with experimental measurements of nanofluid's properties for analysis of fin-orientation effect on natural convection heat transfer

机译:双MRT格子Boltzmann方法结合纳米流体的实验测量对自然对流传热分析翅片定位效应的分析

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Purpose - Natural convection heat transfer during free convection phenomenon in a cavity included with active fins and pipes is investigated. The influence of the orientation of fins on the heat transfer between heat source (i.e. hot fins) and heat sink (i.e. cold pipes) is investigated by using numerical and experimental techniques. Design/methodology/approach - For the numerical simulations, the multiple relaxation time (MRT) thermal lattice Boltzmann method (LBM) is used. In this numerical approach, two separated distribution functions are used to solve the flow and temperature distributions within the computational domain. Furthermore, the local/volumetric second law analysis is used to show the impact of evaluated parameters on the heat transfer irreversibility. In addition, the dynamic viscosity and thermal conductivity of Ti02-water nanofluid are measured by using Brookfield viscometer and KD2 pro conductmeter, respectively. Findings - The examined range of Rayleigh number is from 103 to 106, and the nanofluid samples are provided in 0, 20, 40, 60, 80 and 100 ppm. Originality/value - The originality of this work is use of dual-MRT thermal LBM and experimental measurements of rheological/thermal properties of nanofluid for investigation of free convection problem for the considered application.
机译:研究了 - 在包括有源翅片和管道中包括的空腔中的自由对流现象期间的目的 - 自然对流传热。用数值和实验技术研究了翅片取向对热源(即热翅片)和散热器(即冷管)的热传递的影响。设计/方法/方法 - 对于数值模拟,使用多个弛豫时间(MRT)热格螺栓玻璃法(LBM)。在这种数值方法中,使用两个分开的分布函数来解决计算域内的流量和温度分布。此外,局部/体积的第二法律分析用于显示评价参数对传热不可逆性的影响。此外,通过使用Brookfield粘度计和KD2 Pro导电计测量TiO 2水纳米流体的动态粘度和导热率。结果 - 瑞利数的检查范围为103至106,纳米流体样品在0,20,40,60,80和100ppm中提供。原创性/值 - 这项工作的原创性是使用双MRT热LBM和纳米流体流变/热性能的实验测量,用于调查所考虑的应用。

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