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Boiler Parametric Study of Thermal Power Plant to Opproach to Low Irreversibility

机译:降低低不可逆性的火电厂锅炉参数研究

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In this work, in order to reach to low irreversibilities, the energy and exergy have been analyzed in the boiler system of Tabriz power plant. First, it has been done to decrease the irreversibility of system. Second, flow and efficiencies of energy and exergy of the mentioned system have been studied. In the boiler, the energy efficiencies based on lower and higher heating value of fuel are 91.54% and 86.17% respectively. In other hand, the exergy efficiency is 43.98%. Comparing with Rosen and et al., it is demonstrated that, results have a logical agreement with experimental data. Accordingly, the EES used code, have been validated. Furthermore, the gas fired steam power plant efficiency has been increased by the use of irreversibilities reduction and diminution of excess combustion air and/ or the stack-gas temperature. Finally, these have been concluded, overall energy and exergy efficiencies of Tabriz power plant increase 0.497% and 0.46%, respectively when the fraction of excess combustion air decreases from 0.4 to 0.15.Also these efficiencies increase 2.196% nearly when, the stackgas temperature decreases from 159 to 97℃.
机译:在这项工作中,为了达到较低的不可逆性,已经对大不里士电厂锅炉系统的能量和火用进行了分析。首先,已经做过以减少系统的不可逆性。其次,已经研究了所述系统的能量和火用的流量和效率。在锅炉中,基于较低和较高燃料热值的能源效率分别为91.54%和86.17%。另一方面,能效效率为43.98%。与Rosen等人的比较表明,结果与实验数据具有逻辑一致性。因此,已验证了EES使用的代码。此外,通过使用不可逆性降低和减少了多余的燃烧空气和/或烟道气温度,提高了燃气蒸汽发电厂的效率。最后得出结论,当过量燃烧空气的比例从0.4降低到0.15时,大不里士电厂的总能量和火用效率分别提高0.497%和0.46%。此外,当烟气温度降低时,这些效率几乎提高2.196%从159到97℃。

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