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Optimal tube diameter on heat exchanger shell and tube type with 15 mega watt thermal power using fluent 6.3

机译:热交换器壳体直径的热管直径,使用FLUENT 6.3带15兆瓦瓦热功率的管式直径6.3

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Heat exchanger shell and tube type is a set of tools that serve to move the heat from the side shell (hot fluid) to the tube (cold fluid). RSG-GAS Heat Exchangers is a heat exchanger shell and tube type 2-2. Since the age of Heat Exchanger operation long enough allow for new designs of heat transfer better. This is one reason the presence of micro modeling using Computational Fluid Dynamics (CFD), as one of them using the software FLUENT 6.3. Tube and shell modeled in GAMBIT with the variation ID (inner diameter) tube. As for the physical data such as flow rate, pressure, and temperature refers to the RSG-GAS Heat Exchangers. The first variation is the different mesh sizes for the tube that has the same diameter. Mesh size of 0.8 mm had the best result so do the meshing used as a benchmark for other models. Variations of 2D models use inner diameter from 20 mm until 26m. From CFD calculations using FLUENT 6.3 for 2D models, in the can that ID 20 mm, 23 mm and 26 mm can be used as models for 3D calculations. Of 3D calculations it can be concluded that the tube with an ID of 26 mm have the most optimal heat transfer is equal to 273,24669 K with a pressure drop of 450 Pa.
机译:热交换器壳和管型是一组工具,用于将热量从侧壳(热流体)移动到管(冷流体)。 RSG - 气体热交换器是热交换器壳和管2-2型。自热交换器的年龄以来,足够长的允许热传递的新设计更好。这是使用计算流体动力学(CFD)的微观建模存在的一个原因,作为其中一体的软件流畅的6.3。管和壳体在与变化ID(内径)管中的Gambit中建模。至于流速,压力和温度的物理数据是指RSG气体热交换器。第一变型是具有相同直径的管的不同网格尺寸。网格尺寸为0.8毫米,具有最佳结果,因此该网格用作其他模型的基准。 2D模型的变化使用20mm直到26m的内径。通过使用Fluent 6.3对于2D型号的CFD计算,在ID 20 mm,23 mm和26 mm的情况下可以用作3D计算的模型。 3D计算可以得出结论,具有26 mm的ID的管具有最佳的传热等于273,24669 k,压降为450Pa。

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