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GAS TURBINE INLET AIR COOLING USING ABSORPTION REFRIGERATION: A COMPARISON BASED ON A COMBINED CYCLE PROCESS

机译:燃气轮机入口空气冷却使用吸收制冷:基于组合循环过程的比较

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摘要

Gas turbines are used to meet increasing power-generating needs throughout the world. Technologies for augmenting the capacity of new or existing installations are being devised. One common strategy is to employ evaporative cooling of gas turbine inlet air. This method is attractive because of simplicity and relatively modest hardware requirements. Another strategy is to recover exhaust heat in order to activate an absorption-refrigeration machine. The cooling machine output is then used to cool and dehumidify the compressor inlet air. In this paper, we delineate a heat recovery system for steam/power production, and an ammonia-water absorption machine. The ammonia-water technology offers an element of novelty in that it is capable of chilling the air to lower temperatures than the currently used lithium-bromide technology, or than the evaporative cooling approach. Performance calculations based on leading commercial software are offered. In a simple payback analysis based on the numbers obtained from the simulation, we discuss the potential of the technique.
机译:燃气轮机用于满足世界各地的增加的发电需求。为增强新的技术或现有安装的技术正在设计。一种共同的策略是采用燃气轮机入口空气的蒸发冷却。这种方法由于简单性和相对适度的硬件要求而具有吸引力。另一种策略是为了激活吸收制冷机来恢复废热。然后使用冷却机输出来冷却和除湿压缩机入口空气。在本文中,我们描绘了蒸汽/电力生产的热回收系统,以及氨吸收机器。氨水技术提供了一种新颖性的元素,因为它能够将空气冷却到比目前使用的锂 - 溴化物技术更低的温度,或者比蒸发冷却方法更低。提供了基于领先商业软件的性能计算。在基于从模拟中获得的数字的简单回报分析中,我们讨论了该技术的潜力。

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