IMPROVING APPROACHES TO DETERMINING THE LEVEL OF FILLING OF THE PIPE BODY WITH PUMPED PRODUCT

I.A. Shammazov, A.V. Borisov, B.S. Aleksandruk, V.S. Nikitina, D.I. Mullabaev
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Abstract

As of 2015, there were more than 200 permanent and variable gravity sections of crude oil and petroleum product pipelines in the pipeline system of PJSC Transneft, the natural monopoly for pipeline transportation of crude oil and petroleum products in the Russian Federation. The operation of gravity sections in oil pipelines in Russia is a very important safety and environmental issue, and Russian oil transportation companies are constantly working on improving approaches to monitor and control pipeline operation modes. When these sections occur, special attention is given to determining the geometric capacity of the pipeline section, as pumping is done in batches and commercial pumping product remains in the gravity section during periodic shutdowns. Due to the limited technical equipment of these sections and the likely illegal unrecorded product withdrawals in these pipeline sections, the most demanding approach is to determine the fill factor of the pipe body. The fill factor is influenced by many factors, including the presence of gas phase and water accumulations, correct geometry of the pipe body and other factors. Given the given initial data, it can be seen that the solution to the problem of determining the filling level of a stopped oil pipeline is reduced to the construction of a multifactor model. For accurate determination, in addition to the model, there is a need for relevant software, an algorithm for solving the problem ofcalculating the filling factor. Correspondingly, operating organisations need a system for accounting and control of the product filling level at these sections at the level of improvement of the state system for ensuring unity of measurements and metrological support of accounting for the long-distance pipeline transport of oil and oil products - a strategic resource, the revenues from the sale of which account for about 23 % of the budgetary system of the Russian Federation.The calculation created and proposed by the authors is divided into stages in which the initial data is sequentially collected, the voltages on the capacitors are calculated, the data is processed using the interpolation method, an image is constructed using the Newton-Gauss method, and the filling factor is calculated with various multiphase pumping products. The calculation is made based on voltage readings from sensors located orthogonally to the axis of the pipe body. Using the approximation method and the Newton-Gauss method, you can get rid of the «noise» and level the phase boundary. When tested and implemented at pipeline pumping facilities, it will be possible to clarify the existing dependences of the influence of gas phase friction on the fluid flow rate, and, therefore, evaluate the effect on the filling factor. This calculation can become a tool in the fight against illegal tappings.
改进确定泵送产品填充管体水平的方法
截至 2015 年,在俄罗斯联邦原油和石油产品管道运输的自然垄断企业 Transneft 石油公司的管道系统中,有 200 多个原油和石油产品管道的永久和可变重力段。俄罗斯石油管道重力段的运行是一个非常重要的安全和环境问题,俄罗斯石油运输公司一直在努力改进管道运行模式的监控方法。当出现这些区段时,要特别注意确定管道区段的几何容量,因为泵送是分批进行的,在定期停机期间,商业泵送产品仍留在重力区段中。由于这些管段的技术设备有限,而且这些管段可能存在非法的未记录产品抽取情况,因此要求最高的方法是确定管体的填充系数。填充系数受很多因素的影响,包括气相和水积聚的存在、管体的正确几何形状和其他因素。从给定的初始数据可以看出,确定停输油管道充盈度问题的解决方案简化为构建一个多因素模型。为了准确确定,除了模型之外,还需要相关的软件,即解决计算充气系数问题的算法。相应地,运营机构需要一个系统来核算和控制这些区段的产品装载水平,以改进国家系统,确保石油和石油产品长距离管道运输的测量和计量支持核算的统一性--石油和石油产品是一种战略资源,其销售收入约占俄罗斯联邦预算系统的 23%。作者创建并提出的计算方法分为几个阶段:按顺序收集初始数据,计算电容器上的电压,使用插值法处理数据,使用牛顿-高斯法构建图像,使用各种多相泵产品计算填充系数。计算基于与管体轴线正交的传感器的电压读数。利用近似法和牛顿-高斯法,可以消除 "噪音",平整相界。在管道泵设备上进行测试和实施后,将有可能澄清气相摩擦对流体流速影响的现有依赖关系,从而评估对填充系数的影响。这种计算方法可以成为打击非法分接的工具。
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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