实际气体的非平衡态对其性质的影响

IF 0.3 Q4 ENGINEERING, PETROLEUM Nafta-Gaz Pub Date : 2023-02-01 DOI:10.18668/ng.2023.02.02
Vasif I. Aliyev, J. Aslanov, N. I. Nabiev, Mahluqa S. Rahimova
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引用次数: 0

摘要

“这项科学工作展示了Clapeyron-Mendeleev方程在野外条件下确定天然和伴生石油天然气技术参数的应用和改进领域的研究。根据科学和实践研究以及实验室工作的结果,作者在气体分子动力学理论的基础上,通过为凝析气田生产的天然气和伴生石油气体添加一些真实参数,发展和改进了克拉珀龙-门捷列夫实际气体状态方程。在这方面,克拉佩龙-门捷列夫方程中引入了两个额外的参数——气体的相对密度和相对速度,这是一个新的科学结果,可以帮助确定作者开发的天然气和伴生石油气体状态方程中包含的七个参数。按照“产品(油+气)的生产、收集、制备和输送”系统的连续工艺过程,包括由于内能作用而分别处于非平衡状态下的“气体的收集、制备和输送”,引起广泛的基本工艺参数的自然变化,从而导致气体的物理和化学状态的频繁变化。因此,这项工作确定了主要任务之一是显示天然和伴生石油天然气的组成,这是碳氢化合物及其内能的酸性成分不可逆转化的结果,因此,天然气的特征是各种碳氢化合物和非均质成分(即物理和化学非均质成分)的组成和分布的许多模式。在此条件下,利用实际气体的Clapeyron-Mendeleev状态方程对气体设施(气体处理点、气体分离器的选择、现场气体管道、压缩站)进行了实际计算,确定了工艺参数,结果显示误差较大。这再次证明,许多作者根据实验室对单原子气体和实验室气体(氢、氮、氧、二氧化碳等)的研究结果,建立了真实气体的状态方程。然而,作者在这里对产品和伴生石油天然气进行了实验室研究。根据实验室研究结果,提出了对天然气和伴生气状态方程的改进。
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Influence of the non-equilibrium state of real gases on their properties
"This scientific work presents a study of areas of application and improvement for the Clapeyron–Mendeleev equation to determine the technological parameters of natural and associated petroleum gas under field conditions. As a result of scientific and practical research and laboratory work, the authors, based on the molecular kinetic theory of gases, developed and improved the Clapeyron–Mendeleev equations of state of real gases by adding some genuine parameters for natural and associated petroleum gases produced from oil and gas condensate fields. In this regard, two additional parameters are introduced in the Clapeyron–Mendeleev equation-relative density and relative velocity of gas: and this, as a new scientific result, helps determine any parameter from the seven included in the equation of state of natural and associated petroleum gases developed by the authors. Continuous technological process according to the system of “production, collection, preparation and transportation of products (oil + gas)”, including, separately in non-equilibrium conditions of “collection, preparation and transportation of gas” due to internal energy, causes a natural change in a wide range of basic technological parameters that contribute to frequent changes in the physical and chemical state of the gas. Therefore, this work establishes that one of the main tasks is to show the composition of natural and associated petroleum gas as a result of irreversible transformations of hydrocarbon and acidic components of its internal energy, as a result of which the gas is characterised by a number of patterns in the composition and distribution of components of various hydrocarbon and heterogeneous compositions (i.e., physically and chemically heterogeneous). In these conditions, a practical calculation of gas facilities (gas treatment point, selection of gas separators, field gas pipelines, compressor stations) is carried out to determine process parameters using the Clapeyron–Mendeleev equation of state for real gases, and the results show large errors. This proves once again that many authors have developed equations of state for real gases based on the results of laboratory studies with single-atomic and laboratory gases (hydrogen, nitrogen, oxygen, carbon dioxide, etc.). However, the authors here carried out laboratory studies with products and associated petroleum gas. According to the results of laboratory studies, the authors recommend an improvement of the equation of state of natural and associated petroleum gases.
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来源期刊
Nafta-Gaz
Nafta-Gaz ENGINEERING, PETROLEUM-
CiteScore
0.80
自引率
60.00%
发文量
81
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