Mustafa Jawed, Alqaed Saeed, Siddiqui Mohammad Altamush
Mechanical Engineering Department, College of Engineering, Najran University, Najran 61441, Saudi Arabia.
Department of Mechanical Engineering, Z.H. College of Engineering & Technology, Aligarh Muslim University, Aligarh 202001, India.
Entropy (Basel). 2020 Oct 21;22(10):1189. doi: 10.3390/e22101189.
Computational fluid dynamics (CFD) has become effective and crucial to several applications in science and engineering. The dynamic behavior of buoyancy induced flow of water in partially heated tall open-ended vertical annulus is analyzed based on a CFD technique. For a vertical annulus, the natural convective heat transfer has a broad application in engineering. The annulus is the most common structure used in various heat transmission systems, from the basic heat transfer device to the most sophisticated atomic reactors. The annular test sections of such a large aspect ratio are of practical importance in the design of equipment's associated with the reactor systems. However, depending on the geometrical structure and heating conditions, it exhibits different flow behavior. The annulus may either be closed or open-ended. In this study, we carry out CFD analysis to examine the thermodynamics properties and the detailed thermal induced flow behavior of the water in Tall open-ended vertical concentric annuli. The purpose of this study is to evaluate the impact of a partially heating on mechanical properties and design parameters like Nusselt number, mass flow rate and pressure defect. For Rayleigh number ranging from 4.4 × 10 to 6.6 × 10, while the Prandtl number is 6.43, the numerical solution was obtained. The modelling result showing the measurement and transient behavior of different parameters is presented. The numerical results would be both qualitatively and quantitatively validated. The presentation of unstable state profiles and heat variables along the annulus are also discussed.
计算流体动力学(CFD)在科学与工程的多个应用领域已变得高效且至关重要。基于CFD技术,对部分加热的高大开口垂直环形通道内水的浮力驱动流的动态行为进行了分析。对于垂直环形通道,自然对流换热在工程中有着广泛应用。环形通道是各种传热系统中最常用的结构,从基本的传热装置到最复杂的原子反应堆。这种大纵横比的环形试验段在与反应堆系统相关的设备设计中具有实际重要性。然而,根据几何结构和加热条件,它会呈现出不同的流动行为。环形通道可以是封闭的或开口的。在本研究中,我们进行CFD分析,以研究高大开口垂直同心环形通道内水的热力学性质和详细的热诱导流动行为。本研究的目的是评估部分加热对诸如努塞尔数、质量流率和压力缺陷等力学性能和设计参数的影响。对于瑞利数范围从4.4×10到6.6×10,普朗特数为6.43的情况,获得了数值解。给出了显示不同参数测量值和瞬态行为的建模结果。数值结果将在定性和定量方面得到验证。还讨论了沿环形通道的不稳定状态分布和热变量的呈现。