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A New Dynamic Model of Crude Oil Fouling Deposits and Its Application to the Simulation of Fouling-Cleaning Cycles

机译:原油污垢沉积动态模型及其在污垢清洗循环模拟中的应用

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摘要

Modelling of crude oil fouling in heat exchangers has been traditionally limited to a description of the deposit as a thermal resistance. However, consideration of the local change in thickness and the evolution of the properties of the deposit due to ageing or changes in foulant composition is important to capture the thermal and hydraulic impact of fouling. A dynamic, distributed, first-principles model of the deposit is presented that considers it as a multicomponent varying-thickness solid undergoing multiple reactions. For the first time, full cleaning, partial cleaning, and fouling resumption after cleaning can be simulated in any order with a single deposit model. The new model, implemented within a single tube framework, is demonstrated in a case study where various cleaning actions are applied following a period of organic deposition. It is shown that complete mechanical cleaning and chemical cleaning of different extent, according to a condition-based efficacy, can be seamlessly simulated.
机译:传统上,在热交换器中对原油结垢的建模仅限于将沉积物描述为热阻。但是,考虑到厚度的局部变化以及由于老化或结垢剂组成的变化而引起的沉积物特性的演变,对于捕获结垢的热和水力影响很重要。提出了一种动态的,分布的,第一原理的沉积物模型,该模型将其视为经历了多个反应的多组分变厚度固体。第一次,可以使用单个沉积物模型以任何顺序模拟完全清洁,部分清洁以及清洁后的结垢恢复。在一个案例研究中证明了在单管框架内实施的新模型,该案例在经过一段时间的有机沉积后应用了多种清洁措施。结果表明,根据基于条件的功效,可以无缝模拟不同程度的完全机械清洁和化学清洁。

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