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A novel method for the design of CHCP (combined heat, cooling and power) systems for buildings

机译:一种用于建筑的CHCP(热,冷和电联合)系统设计的新方法

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摘要

The design of capacity and operation of CHCP (combined heat, cooling and power) plants applied to HVAC (heating, ventilation and air conditioning) in buildings entails a considerable difficulty, because efficiency and economic aspects frequently interact in a complex way. Due to the strong fluctuations in thermal demands, the evaluation of a given design usually requires detailed simulations and a significant amount of input data. This paper proposes simplified approaches to estimate the main parameters characterising the thermal performance of the plant (ATD_e method) as well as to identify optimal designs for a given application under certain encouragement policies (annual PES (primary energy savings) strategy). In the ATD_e method, the duration curve of ATD (aggregated thermal demand) is used to estimate, among others, the amount of heat and cooling effectively supplied to the final user for a given design of the plant. This procedure serves to achieve a quick, global evaluation of the thermal performance of CHP (combined heat and power) or CHCP plants with little computational effort. The annual PES strategy searches the optimal values for the engine capacity, the OP (operation period) or both for CHP and CHCP plants in a particular application, defined by its energy demands. Both methods have demonstrated a notably good performance in several test cases with different patterns of the thermal demands.
机译:应用于建筑物中的HVAC(供暖,通风和空调)的CHCP(热,制冷和动力联合)电厂的容量和运行设计存在相当大的困难,因为效率和经济方面经常以复杂的方式相互作用。由于热需求的剧烈波动,对给定设计的评估通常需要详细的仿真和大量的输入数据。本文提出了简化的方法来估算表征工厂热性能的主要参数(ATD_e方法),并在某些鼓励政策(年度PES(一次节能)策略)下确定给定应用的最佳设计。在ATD_e方法中,ATD的持续时间曲线(合计热需求)用于估计给定工厂设计有效提供给最终用户的热量和冷却量。此过程用于以很少的计算工作来快速,全局地评估CHP(热电联产)或CHCP设备的热性能。年度PES策略根据其能源需求,搜索特定应用中CHP和CHCP工厂的发动机容量,OP(运行期)或两者的最佳值。两种方法在具有不同热需求模式的几个测试案例中都表现出了出色的性能。

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