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Heat transfer in a twin-screw multiphase pump: Thermal modeling and one application in the petroleum industry

机译:双螺杆多相泵中的热传递:热模型及其在石油工业中的一种应用

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摘要

This paper presents a model of the heat transfer processes in the casing and rotors of a twin-screw multiphase pump. The model was developed to study the influence of temperature rise in the subsea multiphase pumping system-500 (SMPS), being developed by Petrobras, that operates with a twin-screw multiphase pump. The model is divided in three parts: heat transfer in the casing, in the rotor and energy balance of fluid. For the rotor, a helicoidal coordinate system is used to calculate the heat transfer. Axial symmetry is considered so it is possible to construct a two-dimensional model. The casing is modeled using an eccentric cylindrical coordinate system. In this case, the temperature gradient in axial direction is neglected and a two-dimensional calculation is carried out. The finite volume method is used to solve the transformed partial differential equations. With the two heat transfer models implemented, the fluid temperature is calculated using a simple energy balance that takes into account electric power, transferred heat and fluid internal energy. The implemented model was used to simulate thermal behavior of casing and rotors during loss of prime events faced by SMPS-500. Experimental data collected in pump trials are used as initial input parameters and the model calculates temperature evolution during the loss of prime events.
机译:本文提出了双螺杆多相泵的壳体和转子中的传热过程模型。该模型的开发是为了研究温升对由Petrobras开发的500型海底多相泵系统(SMPS)的影响,该系统与双螺杆多相泵一起运行。该模型分为三个部分:壳体中的热传递,转子中的热传递以及流体的能量平衡。对于转子,使用螺旋坐标系来计算热传递。考虑到轴对称性,因此可以构建二维模型。套管是使用偏心圆柱坐标系建模的。在这种情况下,轴向上的温度梯度被忽略,并且进行了二维计算。有限体积法用于求解变换后的偏微分方程。实施两个传热模型后,可使用简单的能量平衡来计算流体温度,该能量平衡考虑了电功率,传递的热量和流体的内部能量。所实现的模型用于模拟在SMPS-500面临的主要事件损失期间壳体和转子的热行为。泵试验中收集的实验数据用作初始输入参数,并且该模型计算在主要事件损失期间的温度变化。

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