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Implementation of a cogenerative district heating: Optimization of a simulation model for the thermal power demand

机译:实施集中供热:优化火电需求的仿真模型

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The district heating set up with a cogeneration system, concurs to attain energetic, economic and ambient benefits. It also provides to citizens a new service. The project strategy is based on the idea of supplying a portion of the necessary thermal power through a combustion alternative engine in cogeneration modality. It's also interesting to modulate the load with auxiliary boilers fed by natural gas. This solution allows to save primary energy, create a centralization of the energy production, which contributes to the problem of polluting emissions, through the decentralization of the sources. The first step to assess the technical-economic feasibility of a district heating system, based on a cogeneration plant, is to underline and to characterize the energetic request of the basin of user. The objective of the present work is to develop a model that yields an esteem of the hourly thermal load for every days of the heating season of a complex user, represented by a single neighbourhood. To do this, the present work proposes a new method of simulation of the daily and hourly thermal load trend, known only the value of the power installed in the thermal plant for every user, the seasonal hours of the burner operation and the timetable of the heating service distribution, more than the external mean daily temperature trend. The results obtained using this model, have been verified with the data of seasonal consumptions, confirming the validity of the proposed methodology.The above allows to determine, with more precision, the thermal request peak to satisfy, taking in consideration the contemporaneity of the loads, also of different typology, and to carry out a better sizing of the generation plant.
机译:设置有热电联产系统的区域供热系统,可以实现能源,经济和环境效益。它还为公民提供了一项新服务。该项目策略基于通过热电联产方式通过燃烧替代发动机提供一部分必要热能的想法。用天然气供气的辅助锅炉调节负荷也很有趣。该解决方案可以节省一次能源,实现能源生产的集中化,通过分散能源来解决污染排放的问题。评估基于热电联产厂的区域供热系统的技术经济可行性的第一步是强调并确定用户盆地的能源需求。本工作的目的是开发一个模型,该模型可得出以单个社区为代表的复杂用户供暖季节每一天的每小时热负荷的估计值。为此,本工作提出了一种模拟每日和每小时热负荷趋势的新方法,该方法仅知道每个用户在火力发电厂中安装的功率值,燃烧器的季节性运行时间以及燃烧器的时间表。供热服务分布,超过外部平均每日温度趋势。使用该模型获得的结果已通过季节性消耗数据进行了验证,从而证实了所提出方法的有效性。以上考虑到负载的同期性,可以更精确地确定要满足的热量需求峰值,也具有不同的类型,并可以更好地对发电工厂进行规模调整。

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