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Application of Kalina cycle for augmenting performance of bagasse-fired cogeneration plant of sugar industry

机译:Kalina循环在糖类发电厂的增强性能下的应用

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摘要

Power generation through bagasse-fired cogeneration plants is a common practice in sugarcane producing countries. The exergy-based analysis of a 16 MW grid-connected cogeneration plant of a sugar factory situated in India carried out by the author earlier and published as a separate paper, had disclosed that 6.34% of fuel energy and 5.20% of fuel exergy were lost through the flue gases. To utilize a part of this waste heat for conversion into electricity, in this paper, Kalina cycle is theoretically integrated with the considered plant. The sulphuric dew point is estimated to be 100.25 degrees C. Hence, to prevent acid condensation from exhaust gases, the exhaust heat can be safely utilized up to a temperature of 105 degrees C. Keeping ammonia-mass fraction at 0.8 and turbine inlet pressure at 4000 kPa, the net power output of the integrated plant is found to increase by 375.2135 kW thereby increasing the overall energy and exergy efficiencies of cogeneration by 0.3819% and 0.3150% respectively. The plant currently uses bagasse containing 50% moisture. If bagasse is completely dried by suitable means, power output will further increase by 3531.5 kW increasing the cogeneration energy and exergy efficiencies further by 3.5948% and 2.9630%.
机译:通过Bagasse烧制的热电联产植物发电是甘蔗生产国的常见做法。基于Adergy的糖厂的糖厂的散发性分析,位于印度的糖厂早些时候,并作为一个单独的论文发布,阐述了6.34%的燃料能源和5.20%的燃料驱逐出现了通过烟气。为了利用这种废热的一部分进行转换为电力,本文与所考虑的植物理论上整合。因此,硫露点估计为100.25℃。因此,为了防止废气中的酸凝块,可以安全地利用105℃的温度安全地使用排气。在0.8和涡轮机入口压力下保持氨质量分数。 4000 KPA,发现综合厂的净功率输出增加375.2135千瓦,从而提高了热电联产的总能量和漏洞效率分别为0.3819%和0.3150%。该工厂目前使用群体含有50%的水分。如果甘蔗渣通过合适的方式完全干燥,则电力输出将进一步增加3531.5千瓦,进一步提高了热电联产能量,进一步效率3.5948%和2.9630%。

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