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MODELLING INTEGRATED HVAC AND REFRIGERATION SYSTEMS IN A SUPERMARKET

机译:在超市建模集成的HVAC和制冷系统

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Decision makers in the supermarket chains ask with ever increasing strength for a comparison between different HVAC and refrigeration plant solutions, not only in terms of investment costs, but also of energy needs. The option of heat recovery from the refrigeration plant in favour of the HVAC system for space heating is being more and more considered, thus requiring the simulation of a complex system where control strategies play a crucial role. This topic is of great importance also in the view of the reduction of CO_2 emissions, because supermarkets are intensive users of energy. In this paper the preliminary results of a comprehensive model of the HVAC and refrigeration systems in a supermarket are presented. This model is developed in the framework of the EU project CommONEnergy, and is based on the Trnsys platform. A cascade refrigeration system to supply various display cabinets and walk-in coolers is considered for refrigeration, while a Water Loop Heat Pump (WLHP) system is considered for HVAC. Heat recovery is performed by collecting heat from the condensers of the refrigeration systems in favour of the WLHP in the cold season. The effect of a water reservoir is evaluated, as heat storage device for the water loop. The capabilities of such a plant scheme are discussed in the view of energy savings for the whole supermarket. Two locations, representative of as many different European climatic zones, are considered. Optimal values of the activation temperatures for heat recovery, auxiliary heating system and cooling towers are discusses as well as the most convenient size of the reservoirs in order to minimize the primary energy consumption.
机译:超市中的决策者在不同的HVAC和制冷工厂解决方案之间进行了越来越多的优势,不仅在投资成本方面,也是能源需求。从制冷厂的选择,支持空间加热HVAC系统的热量回收是越来越多的,因此需要模拟控制策略起到至关重要的作用的复杂系统。在减少CO_2排放的视图中,这一主题也非常重要,因为超市是能源的密集用户。本文提出了超市中HVAC和制冷系统综合模型的初步结果。该模型是在欧盟项目CommonEnergy的框架中开发的,并基于Trnsys平台。考虑用于制冷的级联制冷系统和供应各种展示柜和步入式冷却器,同时考虑用于HVAC的水环热泵(WLHP)系统。通过从冷冻系统的冷凝器中收集热量来进行热量回收,以寒冷的季节支持WLHP。评估水库的效果,作为水循环的蓄热装置。在整个超市的节能的看法中讨论了这种植物方案的能力。考虑了两个不同欧洲气候区的两个地点。用于热回收,辅助加热系统和冷却塔的激活温度的最佳值,以及储层的最方便的尺寸,以便最小化主要能耗。

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