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DEVELOPMENT OF AN IMPROVED DESICCANT-BASED EVAPORATIVE COOLING SYSTEM FOR GAS TURBINES

机译:用于燃气轮机改进的基于干燥剂的蒸发冷却系统的研制

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The evaporative inlet cooling systems used for inlet cooling of gas turbines during hot summers do not work well in humid areas. However, desiccant wheels can be used to dehumidify the air before passing it trough the evaporative cooler. Since the desiccant wheels work adiabatically, the resulting air is hotter than the air introduced to the wheel and an evaporative cooling system is used to cool down the dehumidified air. Combined direct and indirect evaporative coolers have been already used to investigate the effects of dehumidification on the effectiveness of the evaporation cooling systems. It is shown that a single desiccant wheel does not offer much higher effectiveness compared to the multiple-stage evaporative systems. In this paper, an improved version of the desiccant inlet cooling system is presented. Additional dehumidification and indirect evaporative cooling stages are added to increase the effectiveness of the inlet cooling. A typical gas turbine cycle along with an industrial gas turbine with actual performance curves are used to simulate the thermal cycle in presence of the different inlet cooling systems. The simulations are carried out for three different climatic conditions. The improved and original desiccant-based systems are compared and it is shown that the added stages substantially improve the effectiveness of the desiccant-based inlet cooling.
机译:用于热夏季期间燃气轮机入口冷却的蒸发入口冷却系统在潮湿区域中不适用。然而,在使蒸发冷却器通过之前,可以使用干燥的轮子去制冷空气。由于干燥剂车轮在绝热地工作,所得空气比引入车轮的空气更热,并且蒸发冷却系统用于冷却除湿空气。结合直接和间接蒸发冷却器已经用于研究除湿对蒸发冷却系统的有效性的影响。结果表明,与多级蒸发系统相比,单个干燥剂不提供更高的效率。在本文中,提出了一种改进的干燥剂入口冷却系统的版本。添加了另外的除湿和间接蒸发冷却阶段以增加入口冷却的有效性。典型的燃气轮机循环以及具有实际性能曲线的工业燃气轮机的循环用于在不同入口冷却系统存在下模拟热循环。仿真进行三种不同的气候条件。比较改进的和原始的干燥剂的系统,并表明添加的阶段基本上提高了基于干燥剂的入口冷却的有效性。

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