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Upgraded Algorithm for Calculating the Turbo-Expander of Gas Distribution Stations

机译:配气站涡轮膨胀机的升级算法

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The article deals with the urgency of adapting computational turbo-expander unit parameters techniques to the conditions of their application at gas distribution stations. Existing computational methods based on the use of air as the working medium yield incorrect data to determine the actual design parameters for operating conditions where the working medium is natural gas. A modernized algorithm of thermogasdynamic calculation of turbo-expanders in order to form the correct initial data for design calculations has been proposed. The objective of calculating turbo-expanders is to identify thermogasdynamic parameters and dimensions of the flow channel, rotational speed, and shaft power. Procedure of thermogasdynamic calculations is shown on the example of a turbo-expander running on natural gas. The result will simplify the process of selecting or designing turbo-expander units for gas distribution stations.
机译:本文涉及将计算涡轮膨胀机单位参数技术适应其在加气站中应用条件的紧迫性。基于使用空气作为工作介质的现有计算方法得出的数据不正确,无法确定工作介质为天然气的工况的实际设计参数。提出了一种现代化的涡轮膨胀机热气动力学计算算法,以形成用于设计计算的正确初始数据。计算涡轮膨胀机的目的是识别热力学参数和流动通道的尺寸,转速和轴功率。在天然气上运行的涡轮膨胀机的示例中显示了热气动力学计算过程。结果将简化为气体分配站选择或设计涡轮膨胀机单元的过程。

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