Energy Saving in the Main Gas Pipeline Transport

E. Skiba, V. Shaposhnikov, E. Kocharyan
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引用次数: 3

Abstract

A significant part of the produced gas is transported by trunk pipeline transport. The issue of reducing hydraulic losses during gas transportation is an urgent task for reducing gas transportation enterprise's expenses for their own technological needs. In this paper, we consider the possibility of increasing the energy efficiency of gas transport through the use of an antifriction smooth surface coating of the inner surface of linear sections. Currently, such coatings are used quite rarely due to a significant increase in capital costs for the construction of main gas pipelines. In the course of the study it was shown that the use of these materials can be economically feasible when used not along the entire length of the pipeline, but only in its last sections. This is due to the fact that during the transportation of gas there is a change in the density of the transport medium in the course of travel, which leads to an increase in the flow velocity. Thus, the largest specific losses fall on the last linear sections of the pipeline. The use of pipes with antifriction coating on these sections will allow us to obtain substantially shorter payback periods than for the whole gas pipeline as a whole. This will save energy on the drive of the superchargers of the compressor station or position them at a greater distance from each other.
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天然气主要管道输送中的节能问题
采出气有相当一部分采用干管输送。降低输气过程中的水力损失问题是降低输气企业自身技术需要的费用的紧迫任务。在本文中,我们考虑了通过使用线性截面内表面的抗摩擦光滑表面涂层来提高气体输送能量效率的可能性。目前,由于主要天然气管道建设的资本成本显著增加,这种涂层很少使用。在研究过程中表明,如果不沿整个管道长度使用这些材料,而仅在其最后一段使用这些材料,在经济上是可行的。这是由于在气体的输送过程中,输送介质的密度在行进过程中发生了变化,从而导致了流速的增加。因此,最大的具体损失落在管道的最后线性段。在这些部分使用具有减摩涂层的管道将使我们获得比整个天然气管道更短的投资回收期。这将节省压缩站增压器驱动的能量,或者将它们放置在彼此之间更大的距离。
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