污垢控制与节能

T.Reg. Bott
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引用次数: 7

摘要

两种流动的流体之间的热传递常常伴随着分离它们的表面的污垢。这些沉积物代表了一个绝缘层,它限制了流体之间的热量流动,因此导致热能回收的损失。此外,这些不需要的沉积物的积累会限制流体的流动,从而增加对输送能量的需求。因此,必须注意这样一种可能性,即任何涉及传热的过程的能量效率都可能因热交换器表面上这些沉积物的存在而受到损害。本文概述了传热表面污垢的机理和工艺变量的影响。通常不可能消除表面结垢的发生,因此在设备的设计中必须考虑到这一点。此外,很可能必须采取一些控制措施,以保持传热效率和节约能源。讨论了涉及化学添加剂和物理技术的控制方法。化学和物理技术相结合控制污垢是非常有效的。文中的讨论以实际数据为例,特别提到了冷却水
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fouling Control and Energy Conservation
The transfer of heat between two flowing fluids is often accompanied by fouling of the surface that separates them. These deposits represent an insulating layer that restricts the flow of heat between the fluids and therefore results in a loss of heat energy recovery. Furthermore the accumulation of these unwanted deposits can restrict the flow of fluid and hence increase the demand for transport energy. Attention therefore, has to be paid to the possibility that the energy efficiency of any process involving heat transfer, may be jeopardised by the presence of these deposits on heat exchanger surfaces. The paper outlines the mechanisms by which heat transfer surfaces become fouled and the influence of the process variables. It is usually not possible to eliminate the incidence of surface fouling so that it has to be allowed for in the design of the equipment. In addition it is likely that some control measures will have to be introduced in order to maintain heat transfer efficiency and to conserve energy. Methods of control are discussed that involve the use of chemical additives and physical technologies. A combination of chemical and physical techniques for fouling control can be very effective. The discussion in the paper is illustrated with practical data, with particular reference to cooling water
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