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Sensitivity analysis using simulations for a ground source heat pump – implementation on a solar passive house

机译:使用模拟对地源热泵进行灵敏度分析–在太阳能被动房中实施

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Having in sight the need for a strong reduction in CO2 emissions and the fluctuation of the price of fossil fuels, the ground source resources alongside with the ground source heat pumps are becoming more and more widespread for meeting the heating/cooling demand of several types of buildings. This article targets to develop the thermal modelling of borehole heat storage systems. Trying to emphasize some certain advantages of a GSHP (ground source heat pump) with vertical boreholes, a case study analysing a residential solar passive house is presented. The numerical results are produced using different modelling software like DesignBuilder, EED (Earth Energy Designer) and a sizing method for the length of the boreholes (ASHRAE method). The idea of sizing the length of boreholes (main design parameter and good index in estimating the system’s cost) using two different methods shows the reliability of this modelling tool. The study shows that borehole’s length of a GSHP system can trigger a difference in electricity consumption up to 22%. Moreover, this sensitivity analysis aims to prove that the design of the whole system can be done beforehand just using modeling tools, without performing tests in-situ.
机译:由于迫切需要大量减少二氧化碳排放和化石燃料价格的波动,地源资源以及地源热泵正变得越来越广泛,以满足多种类型的供热/制冷需求。建筑物。本文旨在开发井孔储热系统的热模型。为了强调具有垂直钻孔的GSHP(地源热泵)的某些优势,提出了分析住宅太阳能被动式房屋的案例研究。数值结果是使用不同的建模软件(例如DesignBuilder,EED(地球能源设计器)和钻孔长度的尺寸确定方法(ASHRAE方法)得出的。使用两种不同的方法来确定井眼的长度(主要设计参数和估算系统成本的良好指标)的想法表明了此建模工具的可靠性。研究表明,GSHP系统的井眼长度可以触发高达22%的用电量差异。此外,此敏感性分析旨在证明无需使用现场测试即可仅使用建模工具就可以预先完成整个系统的设计。

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