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首页> 外文期刊>International Journal of Global Warming >Analysis of the start-up and variable load operation of a combined cycle power plant for off-grid mines
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Analysis of the start-up and variable load operation of a combined cycle power plant for off-grid mines

机译:用于离网矿井组合循环发电厂的启动和可变负载运行分析

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p>Mining is an economic activity that intensively uses energy in the extraction and processing of raw minerals. This means that large amounts of greenhouse gas (GHG) emissions are released into the atmosphere. Natural gas in conjunction with combined cycle power plants (CCPP) could replace other more contaminant sources of energy, such as diesel, which is the fuel traditionally preferred in mining to generate power in remote sites. Today, however, the operation of CCPP in stand-alone power systems under frequent load variations and plant start-ups remains challenging. During start-up operations of CCPP, high thermal and mechanical stresses negatively affect the components of the heat recovery steam generator (HRSG). Special off-grid CCPP applications require additional considerations regarding design and operation. Motivated by the challenges associated with using CCPPs in off-grid mines as a main source of electrical power, a CCPP mathematical model was developed to evaluate load changes during start-up and shut-down operations. Two strategies were investigated to minimise consumption of steam: bypass of gas turbine (GT) exhaust gases during a time interval and GT warm-up hold. Results demonstrated that these strategies reduced stresses on the steam drum and lifetime consumption, but could also induce additional fatigue cycles during start-up operations./p>
机译:& p>矿业是一种经济活动,密集地利用原料矿物的提取和加工中的能量。这意味着大量的温室气体(GHG)排放将释放到大气中。天然气与联合循环发电厂(CCPP)相结合,可以取代其他更多污染物的能量来源,例如柴油,这是传统上优选的燃料在挖掘以产生远程位点的电力。然而,今天,CCPP在频繁负载变化和工厂启动下的独立电力系统中的操作仍然具有挑战性。在CCPP的启动操作期间,高热和机械应力对热回收蒸汽发生器(HRSG)的部件产生负面影响。特殊的离网CCPP应用需要有关设计和操作的其他考虑因素。由于与异常电网中的CCPPS相关联的挑战,作为电力的主要来源,开发了一种CCPP数学模型,以评估启动和关闭操作期间的负载变化。研究了两种策略,以最小化蒸汽的消耗:在时间间隔和GT预热保持过程中绕过燃气涡轮机(GT)废气。结果表明,这些策略对蒸汽鼓和寿命消耗的应力降低,但也可以在启动操作期间引起额外的疲劳循环。& / p>

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