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COMPUTATIONAL FLUID DYNAMICS AND EXPERIMENTAL STUDIES OF A NEW MIXING ELEMENT IN A STATIC MIXER AS A HEAT EXCHANGER

机译:换热器中静态混合器中新混合元素的计算流体动力学和实验研究

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The main aim of this work is to study the thermal efficiency of a new type of a static mixer and to analyse the flow and temperature patterns and heat transfer efficiency. The measurements were carried out for the static mixer equipped with a new mixing insert. The heat transfer enhancement was determined by measuring the temperature profiles on each side of the heating pipe as well as the temperature field inside the static mixer. All experiments were carried out with varying operating parameters for four liquids: water, glycerol, transformer oil and an aqueous solution of molasses. Numerical CFD simulations were carried out using the two-equation turbulence k-omega model, provided by ANSYS Workbench 14.5 software. The proposed CFD model was validated by comparing the predicted numerical results against experimental thermal database obtained from the investigations. Local and global convective heat transfer coefficients and Nusselt numbers were detrmined. The relationship between heat transfer process and hydrodynamics in the static mixer was also presented. Moreover, a comparison of the thermal performance between the tested static mixer and a conventional empty tube was carried out. The relative enhancement of heat transfer was characterised by the rate of relative heat transfer intensification.
机译:这项工作的主要目的是研究新型静态混合器的热效率,并分析流量和温度模式以及传热效率。测量是针对配备有新混合插件的静态混合器进行的。通过测量加热管两侧的温度曲线以及静态混合器内部的温度场来确定传热增强。所有实验都是在四种液体(水,甘油,变压器油和糖蜜水溶液)的不同操作参数下进行的。使用由ANSYS Workbench 14.5软件提供的两方程湍流k-ω模型进行了CFD数值模拟。通过将预测的数值结果与从研究中获得的实验热数据库进行比较,验证了所提出的CFD模型。确定了局部和整体对流传热系数和努塞尔数。还介绍了静态混合器中传热过程与流体动力学之间的关系。此外,对测试的静态混合器和常规的空管之间的热性能进行了比较。传热的相对增强以传热的相对速率为特征。

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