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Low-temperature separation of gas: Simulation of dynamic conditions

机译:低温分离气体:动态条件的模拟

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摘要

The aim of the present paper is to increase the efficiency of low-temperature gas separation plant with use of simulation dynamic model. The paper analyzes the main processes occurring at the installation and performs the results of model verification. In addition, the technological scheme of natural low-temperature gas separation and operating parameters of one of the existing installations were considered. A non-stationary mathematical model of the chemical-technological system of low-temperature gas separation was developed. Due to the unsteady mathematical model, it became possible to estimate the time spent on the transient phenomena, as well as to choose the rate of low-temperature separation control parameters change, depending on the technological mode. Eventually, the calculations show how it is possible to avoid the instability of plant operation upset conditions at the workplace. The field of the developed model application is oil and gas industry and also higher education institutions. This software can be used to test the stability of both existing and projected low-temperature gas separation plants.
机译:本文的目的是利用模拟动态模型提高低温气体分离厂的效率。本文分析了在安装时发生的主要流程,并执行模型验证结果。此外,考虑了天然低温气体分离和操作参数的技术方案。开发了低温气体分离化学技术系统的非静止数学模型。由于数学模型不稳定,可以估计在瞬态现象上花费的时间,以及根据技术模式选择低温分离控制参数的速率。最终,计算展示了如何避免在工作场所的植物操作镦粗条件的不稳定性。开发的模型应用领域是石油和天然气工业,也是高等教育机构。该软件可用于测试现有和投影的低温气体分离设备的稳定性。

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