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Simulation on water and sand separation from crude oil in settling tanks based on the particle model

机译:基于粒子模型的沉降罐中水和沙子分离的模拟

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摘要

Settling tanks have been widely applied to water and sand separation from crude oil. At present, the related studies on the effect of water and sand separation in settling tanks mainly focus on computational simulation methods. This paper puts forward a model to simulate the settling process, which considers the heterogeneous diameter distribution of real particles and the variation of emulsion viscosity with water content. In this model, water and sand are perceived as dispersed water droplets and sand particles. By means of tracking the positions of all droplets and particles, variation of water and sand contents are obtained and influential factors of water and sand separation such as settling time, temperatures and processing capacity are analyzed. An experiment conducted in Lao Junmiao oil-field verifies accuracy of the model. Water contents were measured at every 1 m height of a settling tank under the condition of 20 degrees C. Compared with the experimental data, the maximum relative error of the model simulation is 9.38% while the corresponding results of Euler-Eulerian method solved by FLUENT is 33.46%, which identifies that the model is better coincident with the field production. In practical application, the model can determine the processing capacity, settling time and temperature, which are significant for enhancing separation efficiency.
机译:沉降坦克已广泛应用于水和原油的沙子分离。目前,关于水和沙子分离在沉降箱中的影响的相关研究主要集中在计算模拟方法中。本文提出了一种模型来模拟沉降过程,其考虑了真实颗粒的异质直径分布和乳液粘度与含水含量的变化。在该模型中,水和砂被认为是分散的水滴和砂颗粒。通过跟踪所有液滴和颗粒的位置,分析了水和砂内容物的变化,并分析了水和砂分离的影响因素,例如稳定时间,温度和处理能力。在老俊淼油田中进行的实验验证了模型的准确性。在20摄氏度的条件下在沉降罐的每1米高度下测量水分。与实验数据相比,模型模拟的最大相对误差为9.38%,而通过流畅的欧拉 - 欧拉方法的相应结果是33.46%,识别该模型与现场生产更加重合。在实际应用中,模型可以确定处理能力,稳定时间和温度,这对于提高分离效率是显着的。

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