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Selection of the air heat exchanger operating in a gas turbine air bottoming cycle

机译:选择在燃气轮机底部空气循环中运行的空气热交换器

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A gas turbine air bottoming cycle consists of a gas turbine unit and the air turbine part. The air part includes a compressor, air expander and air heat exchanger. The air heat exchanger couples the gas turbine to the air cycle. Due to the low specific heat of air and of the gas turbine exhaust gases, the air heat exchanger features a considerable size. The bigger the air heat exchanger, the higher its effectiveness, which results in the improvement of the efficiency of the gas turbine air bottoming cycle. On the other hand, a device with large dimensions weighs more, which may limit its use in specific locations, such as oil platforms. The thermodynamic calculations of the air heat exchanger and a preliminary selection of the device are presented. The installation used in the calculation process is a plate heat exchanger, which is characterized by a smaller size and lower values of the pressure drop compared to the shell and tube heat exchanger. Structurally, this type of the heat exchanger is quite similar to the gas turbine regenerator. The method on which the calculation procedure may be based for real installations is also presented, which have to satisfy the economic criteria of financial profitability and cost-effectiveness apart from the thermodynamic criteria.
机译:燃气轮机的空气底部循环由燃气轮机单元和空气轮机部件组成。空气部分包括压缩机,空气膨胀器和空气热交换器。空气热交换器将燃气轮机连接到空气循环。由于空气和燃气轮机废气的低比热,空气热交换器具有相当大的尺寸。空气热交换器越大,其效率越高,从而导致燃气轮机空气底部循环效率的提高。另一方面,大尺寸设备的重量更大,这可能会限制其在特定位置(例如石油平台)的使用。介绍了空气热交换器的热力学计算和装置的初步选择。计算过程中使用的设备是板式换热器,与壳管式换热器相比,其特点是尺寸较小,压降较小。从结构上讲,这种热交换器与燃气轮机的再生器非常相似。还提出了可用于实际装置的计算程序的方法,除了热力学标准外,该方法还必须满足财务盈利性和成本效益的经济标准。

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