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Enhancing energy output in Iran's natural gas pressure drop stations by cogeneration

机译:通过热电联产提高伊朗天然气压降站的能源输出

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Natural gas is transported through transit pipeline at high pressures (5-7 MPa) from production sites to end users. In a place of consumption or at passing into a lower pressure pipeline, the pressure of the gas must be reduced. This pressure reduction takes place in places which are called city gate stations (CGSs). Currently, in all Iran's CGSs, valuable pressure exergy (potential energy) of natural gas flow is destroyed in throttling valves. In the current study, based on a comprehensive programme, inlet and outlet properties of natural gas flow and daily flow rate through seven Khorasan Province (Iran) CGS were measured and recorded for a whole year. Based on these data, the amount of energy which could be generated using a combined heat and power system was calculated. The combined heat and power system consists of a preheat section, a turbo expander and an additional prime mover. The amount of electricity generation for the system has been calculated. The results show that 20˙5 MW electrical power can be generated. Based on Iran's average daily natural gas consumption of 336×106 m3/day and assuming the same conditions at all CGSs as at Khorasan, 672 MW electrical power could be generated by cogeneration in all of Iran's CGSs
机译:天然气通过高压管道(5-7 MPa)从生产地点运输到最终用户。在消耗场所或进入低压管道时,必须降低气体压力。这种压力降低发生在称为城市门站(CGS)的地方。当前,在所有伊朗的CGS中,节流阀中的天然气流的宝贵压力本能(势能)被破坏。在当前的研究中,基于一项综合计划,测量并记录了通过七个霍拉桑省(伊朗)的CGS的天然气流量的进出口特性和日流量。根据这些数据,计算使用热电联产系统可产生的能量。热电联产系统由一个预热段,一个涡轮膨胀机和一个附加的原动机组成。已经计算出系统的发电量。结果表明,可以产生20×5 MW的电力。根据伊朗的日均天然气消耗量336×106立方米/天,并假设所有CGS与Khorasan的条件相同,则伊朗所有CGS的热电联产可产生672 MW电力

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