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Optimization of Design Solutions for Surplus Heating and Cooling System in Combination with Ground Source Heat Pump/Chillers

机译:与地源热泵/冷却器结合多余加热和冷却系统设计解决方案的优化

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Hospitals are one of the building categories in Norway which have the highest specific energy consumption. There is significant potential for optimization of the complex energy systems in hospitals by balancing the strongly varying requirements for heating and cooling as a function of time of day and time of year in different parts of the hospital. Sensitivity analysis of the thermal energy system with a focus on parameters of the ground storage system is enabled by combining different interactions between internal gains, hydronic heating, cooling, ground storage systems, and free coolingfunctions. In the planning of new hospitals using ground source heat pumps /chillers in combination, the number of boreholes, depth, distance between the boreholes and dimensioning of the Underground Thermal Energy Storage (UTES) is often not calculated very precisely but instead estimated by using rules of thumb. During an ongoing project, a simulation tool has been made with focus on temperature levels in the ground storage. A. simulation model has been built up based on a 20,000 m2 (215200 ft~2) regional hospital using a combination of the commercial building simulation tool SIMIEN and the energy analysis- and optimization tool VKB-sim. The simulations show the sensitivity of the energy system to changes in number of boreholes, borehole spacing and the dimensioning of the UTES. The paper shows the possibilities of heating the boreholes with the heat from exhaust air (coil in the exhaust air flow) to reduce the number of boreholes and /or the space between the boreholes, thus significantly decreasing the installation cost for ground storage facilities.
机译:医院是挪威的建筑类别,具有最高的特定能耗。通过平衡在医院不同地区的一年中的时间和时间的时间和时间的时间,通过平衡对医院的复杂能量系统优化医院复合能源系统的巨大潜力。通过组合内部收益,氢化加热,冷却,接地存储系统和自由冷却功能之间的不同相互作用,实现了对接地存储系统参数的热能系统的灵敏度分析。在使用地面源热泵/冷却器的新医院的规划中,钻孔的数量,深度,钻孔之间的距离和地下热能存储(UTE)的尺寸之间的距离通常不会非常精确地计算,而是通过使用规则来估算拇指。在正在进行的项目中,已经通过专注于地面存储中的温度水平来进行仿真工具。 A.模拟模型已经基于20,000平方米(215200英尺2)区域医院,使用商业建筑仿真工具SIMIEN和能源分析和优化工具VKB-SIM。模拟显示了能量系统对钻孔数量,钻孔间距和UTE的尺寸变化的敏感性。本文显示了从排气(排气流动中的线圈)加热钻孔的可能性,以减少钻孔之间的钻孔数和/或空间,从而显着降低了地面存储设施的安装成本。

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