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Modeling and Optimization of a Hospital Gas Turbine-Based Cogeneration System

机译:基于医院燃气轮机的热电联产系统的建模和优化

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摘要

Hospitals are among the most energy-intensive commercial buildings in the service industry. Their energy demand is characterized by specific features, being operative 24 h a day, 365 days a year. Several activities performed inside the building require strict control of the indoor climate conditions to ensure comfort and security standards. They present complex HVAC systems, needing various energy forms like electricity and heat in the form of hot water, chilled water, and steam. Consequently, hospitals are ideal applications to exploit the cogeneration systems potential. Indeed, the number of hospitals using combined heat and power (CHP) systems has grown steadily in past years. Hospitals that use CHP take advantage of favorable rate structures and protect themselves from rising electricity prices. Since CHP uses waste heat to produce thermal energy for heating and cooling, hospitals using CHP systems are more energy-efficient, leading to a reduction in the global emissions connected to the hospital activity. The present study involves the development of a numerical model of the gas turbine-based cogeneration system installed in a hospital facility. The realized model has been used to define the system management strategies that enabled two achievements. The minimization of the main global emissions parameters of the system as CO and NOx and the maximization of operational CHP parameters as total efficiency and primary energy saving (PES). The present work describes in detail the realized model and its exploitation, leading to defining the optimal system management strategy based on control parameters applicable to the real test case management system.
机译:医院是服务业中能源最密集的商业建筑之一。它们的能源需求具有特定的特点,一年 365 天、每天 24 小时运行。在建筑物内进行的几项活动需要严格控制室内气候条件,以确保舒适和安全标准。它们呈现出复杂的暖通空调系统,需要各种能源形式,如热水、冷冻水和蒸汽形式的电力和热能。因此,医院是开发热电联产系统潜力的理想应用。事实上,在过去几年中,使用热电联产 (CHP) 系统的医院数量稳步增长。使用热电联产的医院利用有利的费率结构,保护自己免受电价上涨的影响。由于热电联产利用废热产生热能用于加热和冷却,因此使用热电联产系统的医院更节能,从而减少了与医院活动相关的全球排放。本研究涉及开发安装在医院设施中的基于燃气轮机的热电联产系统的数值模型。已实现的模型已用于定义实现两项成就的系统管理策略。将系统的主要全球排放参数最小化为CO和NOx,并将运行中的热电联产参数最大化为总效率和一次节能(PES)。本文详细描述了所实现的模型及其开发方法,从而基于适用于实际测试用例管理系统的控制参数定义了最优的系统管理策略。

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