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Performance Analysis of Chemical Gas Turbine System Using DME as a Fuel and Characteristics of Its Combustion under Fuel-Rich Conditions

机译:富油条件下以二甲醚为燃料的燃气轮机系统性能分析及燃烧特性

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摘要

The Chemical Gas Turbine (ChGT) system, which has been proposed as a novel system of energy generation, comprises two gas turbines and a steam turbine in a cascade configuration. The combustion in the first gas turbine is performed under a fuel-rich condition, while that in the second one is conducted using the exhaust gas from the first gas turbine as a fuel, because it contains combustible components such as H2 and CO. In the present study, the thermal efficiency of the ChGT system to which a dimethyl ether (DME) combustion system was applied has been calculated based on thermodynamic analysis to identify the potential of DME as a fuel in the ChGT system. These results are compared with those of CH4 combustion and a conventional combined turbine cycle. In addition, the characteristics of DME combustion, especially under a fuel-rich condition, are investigated empirically.
机译:化学燃气轮机(ChGT)系统已被提议作为一种新型的发电系统,它包括两个燃气轮机和一个呈级联配置的蒸汽轮机。第一燃气轮机中的燃烧在富含燃料的条件下进行,而第二燃气轮机中的燃烧则使用来自第一燃气轮机的废气作为燃料进行燃烧,因为它包含可燃成分,例如H2和CO。目前的研究中,已基于热力学分析计算了应用二甲醚(DME)燃烧系统的ChGT系统的热效率,以确定DME作为ChGT系统中燃料的潜力。将这些结果与CH4燃烧和常规联合涡轮机循环的结果进行了比较。此外,还对DME的燃烧特性进行了研究,尤其是在燃料丰富的条件下。

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