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A NETWORK APPROACH APPLIED IN MODELLING THE HEAT TRANSFER AND FLUID FLOW IN A SUPERHEATER HEAT EXCHANGER

机译:一种应用在过热器热交换器中传热和流体流动建模的网络方法

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A 1-D thermo-fluid model for a superheater in coal-fired boilers was developed using the network approach encapsulated in the commercial software Flownex. This model brings to light the relationship between the boiler operations, the thermo-fluid processes and the metal temperatures, since it captures the fluid flow as well as the heat transfer. An understanding of this relationship is crucial at both the design and operational stages of a boiler. At the design stage, the model can be used to minimize the material cost while ensuring adequate performance. For an operational boiler, such a model can be combined with condition monitoring and finite element analysis techniques. In turn be used to improve predictive and preventative maintenance of the plant, to analyse the performance of the heat exchanger as well as doing root cause analyses in case of a failure. In order to qualify the model, three boiler operation anomalies were modelled using a tubesheet of superheater with a complex geometry and flow arrangement. For each of these anomalies; outer fouling, inner fouling and flow blockage, three cases were studied. The model successfully predicted that the performance of the heat exchanger drops if the outer fouling layer increases. It also showed that the tube metal temperatures increases if the inner fouling layer increases or the flow throttling increases due to the reduction in the amount of coolant (steam) flowing in the tubes.
机译:使用封装在商业软件飞行中的网络方法开发了燃煤锅炉中过热器的1-D热流体模型。该模型带来了锅炉操作,热流体工艺和金属温度之间的关系,因为它捕获流体流量以及传热。对这种关系的理解对于锅炉的设计和操作阶段至关重要。在设计阶段,该模型可用于最小化材料成本,同时确保足够的性能。对于运行锅炉,这种模型可以与条件监测和有限元分析技术相结合。反过来用于改善工厂的预测和预防性维护,分析热交换器的性能以及在发生故障时进行根本原因分析。为了限定模型,使用具有复杂几何形状和流量布置的过热器的管板建模三个锅炉操作异常。对于这些异常;研究了外部污垢,内部污垢和流量阻塞,研究了三种情况。该模型成功预测,如果外结垢层增加,则热交换器的性能下降。它还表明,如果内部结垢层增加或由于在管中流动的冷却剂(蒸汽)的量的减少,则管金属温度会增加或流量节流增加。

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