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Energy performance comparison of three innovative HVAC systems for renovation through dynamic simulation

机译:三种创新HVAC系统通过动态仿真进行翻新的能源性能比较

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摘要

In this paper, dynamic simulation was used to compare the energy performance of three innovativeHVAC systems: (A) mechanical ventilation with heat recovery (MVHR) and micro heat pump, (B) exhaustventilation with exhaust air-to-water heat pump and ventilation radiators, and (C) exhaust ventilationwith air-to-water heat pump and ventilation radiators, to a reference system: (D) exhaust ventilation withair-to-water heat pump and panel radiators. System A was modelled in MATLAB Simulink and systems Band C in TRNSYS 17. The reference system was modelled in both tools, for comparison between the two.All systems were tested with a model of a renovated single family house for varying U-values, climates,infiltration and ventilation rates.It was found that A was the best system for lower heating demand, while for higher heating demandsystem B would be preferable. System C was better than the reference system, but not as good as A or B.The difference in energy consumption of the reference system was less than 2 kWh/(m2a) betweenSimulink and TRNSYS. This could be explained by the different ways of handling solar gains, but also bythe fact that the TRNSYS systems supplied slightly more than the ideal heating demand.
机译:在本文中,使用动态模拟来比较三种创新的HVAC系统的能源性能:(A)带热回收的机械通风(MVHR)和微型热泵,(B)带排空水热泵和通风散热器的排风,以及(C)使用空气对水热泵和通风散热器的排气通风系统,以供参考系统:(D)使用空气对水热泵和面板散热器的排气通风系统。在MATLAB Simulink中对系统A进行了建模,在TRNSYS 17中对系统Band C进行了建模。在这两种工具中均对参考系统进行了建模,以进行两者之间的比较。所有系统均使用经过翻新的单户住宅模型进行了测试,以适应不同的U值,气候研究发现,A是降低供热需求的最佳系统,而对于更高供热需求的系统,B是更可取的。系统C优于参考系统,但不如A或B.Simulink和TRNSYS之间的参考系统能耗差异小于2 kWh /(m2a)。这可以用处理太阳能增益的不同方法来解释,也可以通过TRNSYS系统提供的热量略多于理想供热需求的事实来解释。

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