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Producing electrical power in addition of heat in natural gas pressure drop stations by ICE

机译:ICE在天然气降压站中除热量外还产生电能

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Natural gas (NG) must be preheated before pressure reduction takes places at City Gate Stations (CGS). It ensures that gas remains above the hydrate-formation zone and dew point, so no pipeline blockage occurs. The preheating consumes a considerable amount of NG as fuel. In order to operate the CGS more efficiently, a new idea is proposed in this study. The idea is to utilize a Combined Heat and Power (CHP) system in which an Internal Combustion Engine (ICE) acts as a prime mover. The ICE is driving a generator in addition of providing heat for preheating NG. To show the advantage of the proposed system, Mashhad CGS has been chosen as a case study. Results show that a CHP system with two 2.8 MW ICEs is the most appropriate system. The system has the minimum fuel consumption and payback period. Based on the Iranian natural gas consumption of 377 × 10~6 (m~3/day) and by assuming the similar conditions for the other CGSs in Iran, the total amount of extractable electrical power from the CHP systems is predicted to be nearly 91.5 MW. That is equivalent to 802.14 GW.hr/year in 2010 with a yearly benefit about 45 million dollars. According to average annual growing rate of 2.4% of gas consumption in Iran, the predictions are performed until 2035.
机译:在市门站(CGS)进行减压之前,必须预热天然气(NG)。这样可确保气体保持在水合物形成区和露点以上,因此不会发生管道堵塞。预热消耗大量的NG作为燃料。为了更有效地操作CGS,本研究提出了一个新的想法。这个想法是利用热电联产(CHP)系统,其中内燃机(ICE)充当原动机。 ICE除了提供热量以预热NG外,还驱动着发电机。为了展示所建议系统的优势,已选择Mashhad CGS作为案例研究。结果表明,具有两个2.8 MW ICE的CHP系统是最合适的系统。该系统具有最小的燃油消耗和投资回收期。基于伊朗的天然气消耗量为377×10〜6(m〜3 /天),并假设伊朗其他CGS的使用条件相似,则可从CHP系统中提取的总电能预计接近91.5兆瓦这相当于2010年的802.14 GW.hr/年,年收益约为4500万美元。根据伊朗天然气消耗量年均增长2.4%的预测,这一预测一直持续到2035年。

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