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Thermodynamic evaluation of irreversibility and optimum performance of a concentrated PV-TEG cogenerated hybrid system

机译:浓缩PV-TEG热电混合系统不可逆性和最佳性能的热力学评估

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In this paper, the thermodynamics evaluation of an irreversible CPV-TEG cogenerating system, having Siemens SP75 PV module and commercially available Bi2Te3TE module, has been investigated for wide solar spectrum to encompass the winter and summer solar radiation. Modeling and simulation of the hybrid system has been carried out to understand the feasibility of the system and to determine the irreversibilities present in the hybrid system. The irreversibilities or exergy destruction caused by the irreversible conversion process of solar energy into electricity are calculated using exergy analysis based on second law of thermodynamics. The various exergy losses occurring in the hybrid system have been calculated using exergy analysis. The effects of the incident solar irradiance varying in a wide range from 100 W/m2to 1000 W/m2, TEG junction temperature ratio, concentration ratio, TEG current, Thomson coefficient, irreversibilities or exergy destruction and the incoming solar radiation exergy have been studied. The results showed that the Thomson effect has adverse effect on the performance of the hybrid system and the irreversibilities increase with increase in concentration ratio,C. Further, the power output of hybrid system increases by 86% asCincreases from 1 to optimum value of 3 and the exergy efficiency is higher than the energy efficiency by 8%. The higher values of the irreversibilities make the system less inefficient and therefore, significant improvements are required because the elevated temperature could result in hot spots formation. The results of this analysis may be helpful in designing of practical CPV-TEG hybrid system.
机译:在本文中,已经对具有西门子SP75 PV模块和商用Bi2Te3TE模块的不可逆CPV-TEG热电联产系统的热力学评估进行了研究,以涵盖较宽的太阳光谱,以涵盖冬季和夏季的太阳辐射。已经进行了混合系统的建模和仿真,以了解系统的可行性并确定混合系统中存在的不可逆性。利用基于热力学第二定律的能级分析,可以计算出太阳能不可逆转换过程所引起的不可逆性或能级破坏。混合系统中发生的各种火用损失已使用火用分析进行了计算。研究了入射太阳辐照度在从100mW / m2到1000 W / m2的宽范围内变化的影响,TEG结温比,浓度比,TEG电流,汤姆森系数,不可逆性或能级破坏以及入射太阳辐射的能级。结果表明,汤姆逊效应对混合体系的性能产生不利影响,并且不可逆性随着浓度比C的增加而增加。此外,随着从1增加到最佳值3,混合动力系统的功率输出增加86%,并且火用效率比能效高8%。较高的不可逆性值会使系统效率降低,因此,需要进行重大改进,因为升高的温度可能会导致形成热点。分析的结果可能有助于设计实际的CPV-TEG混合系统。

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