Use of gas reduction energy at a gas distribution station

A. Karimova, R. Farukhshina
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Abstract

The issue of utilization of excess energy of throttled natural gas is still relevant today. To solve it, various devices are used, based on such principles as on the Ranque-Hilsch vortex effect, temperature stratification using the Leontief tube, expander-generator sets and devices based on the Hartmann-Sprenger effect. One of the most common devices at gas distribution stations (gas gate station) is the turboexpander. The principle of its operation is based on the expansion of the gas flow with the performance of external mechanical work. Taking into account the increased interest in hydrogen fuel in connection with the course announced by the UN for decarbonization of production by 2050, the modern gas transmission system can become a secondary source of electricity for hydrogen production, thereby solving the problem of excess pressure energy utilization at gas distribution stations. The technological solution for using this energy is the installation of turboexpanders and electrolysis of water at gate stations in order to produce hydrogen.
在加油站使用减气能源
利用节流天然气的过剩能量的问题今天仍然具有现实意义。为了解决这个问题,使用了各种装置,基于Ranque-Hilsch涡旋效应,使用Leontief管的温度分层,膨胀发电机组和基于Hartmann-Sprenger效应的装置。在加油站(燃气门站)最常见的设备之一是涡轮膨胀机。其工作原理是基于气体流量的膨胀与外部机械功的表现。考虑到与联合国宣布的到2050年生产脱碳的过程有关的对氢燃料的兴趣增加,现代天然气传输系统可以成为氢生产的二次电力来源,从而解决天然气配站的超压能源利用问题。利用这种能源的技术解决方案是在闸站安装涡轮膨胀器和电解水以产生氢气。
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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