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Modeling and analysis of a solar boosted biomass-driven combined cooling, heating and power plant for domestic applications

机译:太阳能提升生物质驱动的综合冷却,加热电厂的建模与分析

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摘要

A solar-assisted biomass-based tri-generation system is suggested to provide domestic energy demands and studied from the perspectives of thermodynamics and sustainability. In the proposed combined system, gas and steam turbines are considered as the main power generation systems, while the chiller and an auxiliary heat exchanger exploit the thermal energy content of the effluent. A pressurized water circuit is also considered to harvest the waste heat from the employed steam cycle condenser and concentrated photovoltaic to feed the desired space heating. The main components of the integrated system are assessed exergetically to show the main exergy destructive units. The influence on the performance of the system of some decision parameters and summer/winter conditions as well is investigated. Results showed that the designed system is capable to feed 1241 kW space heating, 101.5 kW domestic hot water and 55.35 kW chilled water as space cooling, besides delivering 1MWe power. It is revealed that the pressure ratio of the air compressor leads to the system performance optimizing while the performance of the system has a linear relation with two variables of the gas turbine inlet temperature and cold end temperature difference within the air heater.
机译:建议辅助基于生物质的三代三代制度,以提供国内能源需求,并从热力学和可持续性的角度研究。在所提出的组合系统中,气体和蒸汽涡轮机被认为是主要发电系统,而冷却器和辅助热交换器利用流出物的热能含量。还考虑加压水电路,以收获来自所采用的蒸汽循环冷凝器和浓缩光伏的废热以供给所需的空间加热。综合系统的主要组成部分经过高级评估,以显示主要的漏洞破坏性单位。研究了对某些决策参数和夏季/冬季条件的系统性能的影响。结果表明,除了提供1MWE的电源之外,设计的系统能够馈送1241千瓦的空间加热,101.5 kW家庭热水和55.35 kW冷却水作为空间冷却。据透露,空气压缩机的压力比导致系统性能优化,而系统的性能具有线性关系,其与空气加热器内的燃气涡轮机入口温度和冷端温度差的两个变量。

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