Повышение эффективности систем улавливания паров нефти при товарно-транспортных операциях на нефтеналивных терминалах

IF 2.4 Q2 MINING & MINERAL PROCESSING
Vladimir Pshenin, G. Zakirova
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引用次数: 0

Abstract

In this paper the problem of losses from evaporation of light fractions of hydrocarbons during loading operations of tanker fleets vessels is considered. It was found that there is no unified approach to modeling the system “tanker – gas phase pipeline – vapor recovery units” in open sources. The absence of a generally recognized model makes it impossible to scientifically justify the application of instruments to reducing losses and the development of corresponding measures. In work it is showed that the dynamics of growth of pressure in the inner tanker capacity is described by a differential equation, considering for non-stationary essence of the process. This equation is converted to a non-dimensional form and investigated in relation to the similarity criteria of this system. This research has allowed to establish unambiguously the general character of pressure changes in the inner tanker capacity, and to predict the peak values of its growth at the initial stage of the loading operation. The obtained equations were tested on real tanker loading data and showed satisfactory convergence with the experimental data. At different stages of the loading opera-tion the component composition of vapor changes, which is shown by chromatographic analysis of the gas mixture. With the availability of a model of hydrocarbon vapor displacement from the inner of tanker, it is possible to propose measures to minimize the negative impact on the environment and return valuable vapors of the product to the technological chain of transportation.
石油航站楼商品运输业务中石油蒸汽捕获系统效率的提高
本文研究了油轮船队装卸作业中烃类轻馏分蒸发损失问题。研究发现,在开放源码中,没有统一的方法对“罐车-气相管道-蒸汽回收装置”系统进行建模。由于缺乏一个普遍认可的模式,就不可能科学地证明应用工具来减少损失和制定相应措施是合理的。研究表明,考虑到该过程的非平稳性质,罐内容量压力增长的动态可以用微分方程来描述。将该方程转化为无量纲形式,并结合该系统的相似准则进行了研究。这项研究可以明确地确定油罐内容量压力变化的一般特征,并预测其在装载操作初始阶段增长的峰值。用实际油轮装载数据对所得方程进行了验证,结果与实验数据具有较好的收敛性。在装载操作的不同阶段,蒸汽的组分组成发生了变化,这可以通过气相混合物的色谱分析来证明。有了油罐内部碳氢化合物蒸汽置换模型,就有可能提出措施,尽量减少对环境的负面影响,并将有价值的产品蒸汽返回到运输技术链中。
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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来源期刊
Journal of Mining Institute
Journal of Mining Institute MINING & MINERAL PROCESSING-
CiteScore
7.50
自引率
25.00%
发文量
62
审稿时长
8 weeks
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