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A dynamic model for FLNG spiral wound heat exchanger with multiple phase-change streams based on moving boundary method

机译:基于移动边界法的多相流FLNG螺旋缠绕换热器动力学模型

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摘要

For predicting the dynamic performance of spiral wound heat exchangers (SWHEs) applied in floating liquefied natural gas (FLNG) offshore platforms, a dynamic model reflecting the heat transfer among multiple phase-change streams in SWHEs is presented. In the dynamic model, a two-dimensional partitioned matrix is proposed to describe the heat transfer relations among phase-change streams in a general form; a group of generic equations based on the partitioned matrix is developed to calculate the heat capacities of phase-change streams, suitable for all types of phase zones (i.e. vapor, two-phase and liquid zones). An implicit iterative algorithm is proposed to solve the equations. The reliability and capability of the model has been partly validated by comparing the calculated steady-state performance with experimental data, and the dynamic performance under sloshing conditions are investigated, indicating that the sloshing-induced reduction of SWHE overall performance is within 5% for most cases. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了预测应用于浮动液化天然气(FLNG)海上平台的螺旋缠绕式换热器(SWHE)的动态性能,提出了反映SWHE中多个相变流之间的热传递的动力学模型。在动力学模型中,提出了二维划分矩阵,以一般形式描述相变流之间的传热关系。开发了一组基于分配矩阵的通用方程式,以计算相变流的热容,适用于所有类型的相区(即蒸汽,两相和液相区)。提出了一种隐式迭代算法来求解方程。通过将计算的稳态性能与实验数据进行比较,部分验证了模型的可靠性和功能,并且研究了晃荡条件下的动态性能,表明晃荡引起的SWHE总体性能下降在大多数情况下不超过5%。案件。 (C)2016 Elsevier B.V.保留所有权利。

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