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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Feasibility analysis of gas turbine inlet air cooling by means of liquid nitrogen evaporation for IGCC power augmentation
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Feasibility analysis of gas turbine inlet air cooling by means of liquid nitrogen evaporation for IGCC power augmentation

机译:利用液氮蒸发法进行燃气轮机进气冷却以提高IGCC功率的可行性分析

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Integrated Gasification Combined Cycles (IGCC) are energy systems mainly composed of a gasifier and a combined cycle power plant. Since the gasification process usually requires oxygen as the oxidant, an Air Separation Unit (ASU) is also part of the plant. In this paper, a system for power augmentation in IGCC is evaluated. The system is based on gas turbine inlet air cooling by means of liquid nitrogen spray. In fact, nitrogen is a product of the ASU, but is not always exploited. In the proposed plant, the nitrogen is first liquefied to be used for inlet air cooling or stored for later use. This system is not characterized by the limits of water evaporative cooling systems (the lower temperature is limited by air saturation) and refrigeration cooling (the effectiveness is limited by the pressure drop in the heat exchanger). A thermodynamic model of the system is built by using a commercial code for energy conversion system simulation. A sensitivity analysis on the main parameters is presented. Finally the model is used to study the capabilities of the system by imposing the real temperature profiles of different sites for a whole year and by comparing to traditional inlet air cooling strategies. (C) 2015 Elsevier Ltd. All rights reserved.
机译:整体气化联合循环(IGCC)是主要由气化炉和联合循环发电厂组成的能源系统。由于气化过程通常需要氧气作为氧化剂,因此空气分离装置(ASU)也是工厂的一部分。在本文中,对IGCC中的功率增强系统进行了评估。该系统基于通过液氮喷雾的燃气轮机进气冷却。实际上,氮气是ASU的产物,但并不总是被利用。在拟议的工厂中,首先将氮气液化以用于进气冷却或存储以备后用。该系统的特点不在于水蒸发冷却系统(较低的温度受空气饱和度限制)和制冷冷却(有效性受热交换器中的压降限制)的限制。通过使用商业代码对能量转换系统进行仿真,可以建立系统的热力学模型。提出了对主要参数的敏感性分析。最后,该模型用于通过强加一年中不同地点的实际温度分布并与传统的进气冷却策略进行比较来研究系统的功能。 (C)2015 Elsevier Ltd.保留所有权利。

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