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Surface Patterning of Stainless Steel in Prevention of Fouling in Heat Transfer Equipment

机译:不锈钢表面图案化防止传热设备污垢

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Fouling of surfaces is a major challenge in design and operation of many industrial heat transfer equipment. Fouling causes significant energy, material and production losses, which increase the environmental impact and decrease economic profitability of processes. Even small improvements in prevention of fouling would lead to significant savings in a wide range of heat transfer applications. In this study, crystallization fouling of aqueous calcium carbonate solutions on a heated stainless steel surface is used to investigate the prevention of fouling in heat transfer equipment by physical surface modifications. Fouling behaviour of different surface patterns are studied experimentally in a laboratory scale fouling test apparatus. CFD modelling is used to study hydrodynamic and thermal conditions near surfaces with different patterns. In addition, the effect of surface pattern on the removal of particles is studied numerically. Surface patterning is found to affect the hydrodynamic and thermal conditions near the wall, and therefore to change the conditions for fouling layer build-up and removal, when compared to a flat heat transfer surface. The most promising surface pattern includes curved shapes, and it seems to create flow conditions in which improved convective heat transfer decreases the driving force for crystallization fouling. In addition, curved surfaces increase the shear forces at the wall, which prevents adhesion of the foulants to the surface and increases resuspension.
机译:表面的污染是许多工业传热设备的设计和运行中的主要挑战。结垢导致显着的能量,材料和生产损失,这增加了环境影响并降低了流程的经济盈利能力。即使在防污染的情况下也会发生较小的改善将导致各种传热应用中的显着节省。在该研究中,使用碳酸钙水溶液在加热的不锈钢表面上结晶污染来研究通过物理表面修饰来预防传热设备中的污垢。在实验室规模污垢测试装置中实验研究不同表面图案的污垢行为。 CFD建模用于研究具有不同图案的表面附近的水动力和热条件。另外,在数值上研究了表面图案对去除颗粒的影响。发现表面图案化以影响墙壁附近的流体动力学和热条件,从而改变与扁平传热表面相比的污垢层积聚和移除的条件。最有希望的表面图案包括弯曲形状,似乎产生流动条件,其中改善的对流传热降低了结晶污垢的驱动力。另外,弯曲表面增加壁处的剪切力,这防止污垢粘附到表面并增加重悬浮。

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