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首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >A new approach of splitting C6+ composition of pipeline gas for hydrocarbon dew point determination
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A new approach of splitting C6+ composition of pipeline gas for hydrocarbon dew point determination

机译:确定烃类露点的管道气体中C6 +成分分解的新方法

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摘要

Hydrocarbon dew point (HCDP) is a critical consideration for pipeline operations. Equation of state (EOS) method combined with Gas Chromatograph analysis is one of the methods used for HCDP determination. Most of the GCs on pipeline gas and in end-user installations are generally C6+ design and a few are C9+ design. In applying a HCDP limit using C6+ data, it is prudent to use an appropriate split of the C6+ composition. Though several fixed ratios of C6+ composition splits have been published in a Gas Processors Association standard and by leading chromatograph manufacturers for application, but may not truly reflect the C6+ composition of a particular gas. This work therefore presents a very simple procedure for splitting C6+ component into C6/C7/C8 for any particular pipeline gas provided that the specific gravity of the C6+ data is known. The method involves; determination of the molecular weights of C6/C7/C8 using three well-established hydrocarbon physical properties correlations, solution of the algebraic equations of the apparent molecular weight of C6+ using matrix notation, and application of logarithmic distribution to the calculated “quasi-mole fraction” of the individual C6+ components. An application of this approach to a field C6+ data is presented. In order to show the capabilities of the new approach, results comparison of calculated HCDP as well as cricondentherm (using HYSYS? with Peng Robinson EOS) between the new approach and some common C6+ composition splits is made.
机译:烃露点(HCDP)是管道运行的关键考虑因素。状态方程(EOS)方法与气相色谱分析相结合是用于HCDP测定的方法之一。管线气体和最终用户安装中的大多数GC通常都是C6 +设计的,还有一些是C9 +设计的。在使用C6 +数据应用HCDP限值时,应谨慎使用C6 +成分的适当划分。尽管在气体处理器协会标准中和领先的色谱制造商中已发布了几种固定比例的C6 +成分分馏率,但仍未真正反映特定气体的C6 +成分。因此,如果已知C6 +数据的比重,此工作将提供一个非常简单的过程,可将任何特定管道气体的C6 +组分分为C6 / C7 / C8。该方法涉及;使用三个公认的烃物理性质相关性确定C6 / C7 / C8的分子量,使用矩阵表示法求解C6 +的表观分子量的代数方程式,并将对数分布应用于计算的“准摩尔分数”各个C6 +组件的“”。提出了这种方法对现场C6 +数据的应用。为了显示新方法的功能,对新方法与一些常见的C6 +成分拆分之间的HCDP以及cricondentherm(使用HYSYS?和Peng Robinson EOS)进行了结果比较。

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