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Retrofitting Gas Turbine Units Parabolic Trough Concentrated Solar Power for Sustainable Electricity Generation

机译:改造燃气轮机单元抛物面槽集中可持续发电太阳能电力

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Shams1 is hybrid solar/natural-gas concentrated solar power (CSP) plants. The plant is also integrated with a booster gas-fired-heaters for steam superheating. In addition to direct fire-heaters to the heat transfer fluid (HTF) for supplying thermal energy during the night or whenever the solar irradiance level is dimmed. However, there is a more sustainable way to avoid power-generation-outages caused by transient weather conditions without a significant plant reconstruction, i.e. integration with gas turbines. In this study, a thermodynamic model of Shams1 integration with gas turbines is developed to investigate the gas turbine capacity and the exergitic efficiency of the supplied gas with and without the gas turbine involvement. The HTF heaters will receive the needed thermal energy from the gas turbines exhaust gases instead of the direct fire-heater (case1). Another potential is replacing the booster fire heaters with the gas turbine system as well. (case2). A parametric study is conducted to determine the size and the requirements of a gas turbine system for the specified power target demand in addition to a feasibility study for the proposed system. The results showed that using two gas turbines for the HTF heater significantly improved the overall efficiency and reduces the CO_2 emission. Replacing the booster heater with two gas turbines improves the efficiency up to excess air factor of 2.5.
机译:Shams1是混合型太阳能/天然气集中的太阳能(CSP)植物。该植物还与加强燃气加热器集成,用于蒸汽过热。除了直接火液到传热流体(HTF)之外,用于在夜间供应热能,或者在太阳辐照度水平暗镜时。然而,有一种更可持续的方法来避免出现由瞬态天气条件引起的发电缓解,而无需显着植物重建,即与燃气轮机集成。在本研究中,开发了一种与燃气轮机的Shams1集成的热力学模型,以研究燃气涡轮机容量和随着燃气涡轮机受累的供应气体的出现效率。 HTF加热器将从燃气涡轮机排气而不是直接火水器(壳体1)接收所需的热能。另一种潜力也是用燃气轮机系统替换加强炉火加热器。 (案例2)。除了用于所提出的系统的可行性研究之外,还进行参数研究以确定用于指定功率目标需求的燃气轮机系统的尺寸和要求。结果表明,使用两个用于HTF加热器的燃气轮机显着提高了整体效率并降低了CO_2排放。用两个燃气轮机更换助推器加热器,将效率提高到过量的空气因子为2.5。

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