首页> 外文会议>Energy Conversion Engineering Conference, 1997. IECEC-97., Proceedings of the 32nd Intersociety >Optimal integration condition between the gas turbine air compressor and the air separation unit of IGCC power plant
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Optimal integration condition between the gas turbine air compressor and the air separation unit of IGCC power plant

机译:燃气轮机空压机与IGCC电厂空分装置之间的最佳集成条件

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Parametric studies are conducted for optimizing the integration design between gas turbine compressor and air separation unit (ASU) of integrated gasification combined cycle (IGCC) power plant. The ASU is assumed as low pressure double-distillation column process which is integrated at the interstage location of the compressor, and integration design criteria of air extraction and reversing heat exchanger are defined and mathematically formulated. With the performance prediction of compressor by through-flow analysis, the effects of pinch-point temperature difference (PTD) in the reversing heat exchanger, the amount and the pressure of extracted air are quantitatively examined. As the extraction air amount or the PTD is increased. the power consumption is increased. The compressor efficiency deteriorates as the increase of the flow rate of air extracted at higher pressure while improving at lower pressure air extraction. Furthermore, optimal integration condition for compressor efficiency maximization is found by generating the compressor characteristic curve.
机译:进行参数研究以优化燃气轮机压缩机与整体气化联合循环(IGCC)电厂的空气分离单元(ASU)之间的整体设计。 ASU被假定为低压双蒸馏塔工艺,该工艺集成在压缩机的级间位置,并定义了吸气和换热器的集成设计标准,并对其进行了数学公式化。通过通流分析预测压缩机的性能,定量研究了换热器中的夹点温差(PTD),抽气量和抽气压力的影响。随着抽气量或PTD的增加。功耗增加。随着在较高压力下抽取的空气流量的增加,而在较低压力下抽取的空气改善的情况下,压缩机效率下降。此外,通过生成压缩机特性曲线,找到了使压缩机效率最大化的最佳积分条件。

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