试井数据处理方法

V. Dmitruk, Ojsc «Severneftegazprom», A. Kasyanenko, E. B. Kovinchenko, I. Kravchenko
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引用次数: 0

摘要

本出版物讨论了研究工作,以改进OJSC«Severneftegazprom»的Yuzhno-Russkoye油气凝析油田冷却压缩气体的现有工艺。该项目包括对天然气处理、压缩和运输的技术过程进行科学研究。根据本项目的研究成果,开发了增压压缩站气体抽油机后压缩气体附加冷却系统(不受环境温度影响)。在现有的压缩气体冷却工艺流程中实施时,所开发的系统将提供所需的天然气温度参数,并与燃气和回热式换热器的空冷机组一起运行。为了选择一个额外的气体冷却系统,提供所需的冷却能力,考虑到现有的能源资源(电力、天然气)和Yuzhno-Russkoe油气田凝析油的气候条件,对俄罗斯市场上该设备实际可用的不同气体冷却系统进行详细建模,并选择具有最高综合效应率和性能指标的选项。拟议的解决办法保证在合同义务的框架内稳定供应商业天然气,并排除环境温度因素对技术过程的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Data Processing Method of Well Testing
This publication discusses research work to improve the existing process for cooling compressed gas at the Yuzhno-Russkoye oil and gas condensate field of OJSC «Severneftegazprom». This project consisted in a scientific study of technological processes for the treatment, compression and transportation of natural gas. Based on the results of the research project, a system for additional cooling of compressed gas after the gas pumping units of the booster compressor station was developed (independent of the ambient temperature). When implementing into the existing technological process of cooling the compressed gas, the developed system will provide the required temperature parameters of the natural gas together with the operated air cooling units of gas and recuperative heat exchangers. To select an additional gas cooling system providing the required cooling capacity, taking into account existing energy resources (electricity, natural gas) and climatic conditions of the Yuzhno-Russkoe oil and gas condensate field, a detailed modeling of the different options of cooling systems of gas actually available on the market of this equipment in Russia and the option selection with the highest rates of integral effect and performance index. The proposed solution guarantees a stable supply of commercial natural gas within the framework of contractual obligations and excludes the influence of temperature factors of the environment on technological processes.
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