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EVALUATION OF USING SUPERCRITICAL RANKINE CYCLES IN INTEGRATED COAL GASIFICATION COMBINED CYCLES (IGCC)

机译:煤成气联合循环(IGCC)中超临界RANK循环的使用评价

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Coal is a prominent energy resource in the modern world, particularly in countries with emerging economies. In order to reduce emissions, it is necessary to find a way to utilize coal in a cleaner manner, such as through supercritical and ultra-supercritical Rankine cycles and the Integrated Gasification Combined Cycle (IGCC). Two approaches-raising the boiler pressure and using a reheat scheme-have been proven to notably increase the Rankine cycle efficiency. Thus, this study aims to investigate the effects of implementing reheat and supercritical or ultra-supercritical pressure in the bottom Rankine cycle on the IGCC cycle efficiency. First, reference cases of a standalone Rankine cycle were studied with single and double reheat, including boiler pressure levels from subcritical to ultra-supercritical conditions, followed by similar combined cycle cases, and finally IGCC systems. The results indicate that the notable efficiency enhancement in the standalone subcritical Rankine cycle do not prevail in the studied IGCC systems. Thus, it is not economically worthwhile to implement supercritical or ultra-supercritical bottom Rankine cycles in IGCC applications.
机译:煤炭是现代世界中一种重要的能源,特别是在新兴经济体国家中。为了减少排放,有必要找到一种更清洁的方式利用煤炭的方法,例如通过超临界和超超临界朗肯循环以及整体煤气化联合循环(IGCC)。事实证明,提高锅炉压力和使用再热方案的两种方法可以显着提高朗肯循环效率。因此,本研究旨在研究在底部兰金循环中实施再热和超临界或超超临界压力对IGCC循环效率的影响。首先,研究了单次和双次再加热的独立朗肯循环参考案例,包括从亚临界到超超临界条件的锅炉压力水平,然后是类似的联合循环案例,最后是IGCC系统。结果表明,在研究的IGCC系统中,独立的亚临界兰金循环中效率没有显着提高。因此,在IGCC应用中实施超临界或超超临界底部朗肯循环在经济上并不划算。

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