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首页> 外文期刊>Theoretical foundations of chemical engineering >Development and Evaluation of Vipertex Enhanced Heat Transfer Tubes for use in Fouling Conditions
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Development and Evaluation of Vipertex Enhanced Heat Transfer Tubes for use in Fouling Conditions

机译:用于污垢条件的Vipertex增强传热管的开发和评估

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摘要

Heat transfer enhancement is important in the development of high performance thermal systems. Some enhanced tubes that are currently on the market are vulnerable to fouling. Economic and technical problems associated with fouling in process systems have been previously discussed in literature; however, they still require additional examination. Parameters that influence fouling include: surface geometry, surface temperature, surface material/finish, fluid dynamics, flow velocity and fluid properties. Vipertex? enhanced surfaces are optimized process surfaces that increase heat transfer through a combination of factors that include: increasing fluid turbulence, secondary flow development, disruption of the thermal boundary layer and increasing the heat transfer surface area. Vipertubes~(TM) that have been exposed to a fouling environment produce more heat transfer than smooth tubes exposed to the same fouling conditions; additionally there was less total fouling over a given time period. The reduction in the rate of fouling is the result of secondary flow patterns that form as a result of the patented Vipertex surface design. These secondary flows circulate near the tube surface and clean it; slowing down the buildup of materials. Vipertex EHT series tubes enhance heat transfer (even under fouling conditions), minimize operating costs and recover more energy than smooth tubes under the same conditions. These surfaces provide an opportunity to advance the design of various heat transfer products.
机译:传热的增强在高性能热系统的开发中很重要。当前市场上的一些增强型管容易结垢。先前已经在文献中讨论了与过程系统结垢有关的经济和技术问题。但是,它们仍然需要额外的检查。影响结垢的参数包括:表面几何形状,表面温度,表面材料/表面处理,流体动力学,流速和流体性质。毒蛇?增强型表面是经过优化的过程表面,可通过多种因素组合来提高热量传递,这些因素包括:增加流体湍流,二次流发展,破坏热边界层并增加热量传递表面积。暴露在结垢环境中的Vipertubes™比暴露在相同结垢条件下的光滑管产生更多的热传递。此外,在给定的时间段内总的结垢更少。结垢率的降低是由于获得专利的Vipertex表面设计而形成的二次流模式的结果。这些二次流在管子表面附近循环并清洁。放慢材料的堆积。与相同条件下的光滑管相比,Vipertex EHT系列管增强了热传递(即使在结垢条件下),最大限度地降低了运营成本并回收了更多的能量。这些表面为改进各种传热产品的设计提供了机会。

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