ANALYSIS OF METHODS OF ETHANE PIPELINE TRANSPORTATION

S. V. Kitaev, R.A. Molchanova, D.I. Melnikov
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Abstract

The products of hydrocarbon light fractions processing are becoming of great demand. An important component of natural gas is ethane used for high-tech products at gas chemical complexes. Ethane production in situ is a promising direction, with its subsequent transportation to gas and chemical plants. The most economical type of transport is pipeline transportation, providing the construction of a pipeline system including facilities and a linear part. Ethane is a gas that can be transported along isothermal pipelines in both liquid and gaseous states. At the same time, the question of choosing the most rational variant is relevant. The article analyzes possible methods of transporting ethane and ethane fractions along pipelines, consideres variants for pumping gas in a liquid and gaseous states, taking into account the component composition of the product at a specified productivity and initial thermal parameters to summarize recommendations when choosing the most rational method of product transportation. A method is presented for the analytical representation of the dependences of pressure, elasticity, density and viscosity on temperature for the convenient determination of physical properties of multicomponent ethane fractions. The methodological foundations of the thermal and hydraulic analysis of variants for ethane transportation in two phase states – in liquid and gaseous – with the energy efficiency assessment of gas pumping are presented. It is shown that when transporting ethane in a gaseous state, the metal consumption for the pipeline increases twice as compared with the pipeline for transporting the product in a liquid state, while energy consumption also doubles.
乙烷管道运输方法分析
烃类轻馏分加工产品的需求量越来越大。天然气的一个重要组成部分是乙烷,用于天然气化工联合企业的高科技产品。就地生产乙烷是一个很有前景的方向,随后将其运输到天然气和化工厂。最经济的运输方式是管道运输,即建造一个包括设施和线性部分的管道系统。乙烷是一种气体,可以液态和气态两种状态沿着等温管道运输。同时,选择最合理的变体也是一个相关问题。文章分析了沿管道输送乙烷和乙烷馏分的可能方法,考虑了在液态和气态下抽吸气体的各种变体,同时考虑了在特定生产率和初始热参数下产品的成分组成,以便在选择最合理的产品输送方法时总结建议。为方便确定多组分乙烷馏分的物理性质,介绍了一种分析压力、弹性、密度和粘度与温度关系的方法。介绍了在液态和气态两相状态下乙烷运输变体的热力和水力分析方法基础,以及气体抽吸的能效评估。结果表明,与液态乙烷运输管道相比,气态乙烷运输管道的金属消耗量增加了一倍,而能耗也增加了一倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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