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Building Energy Simulation by an In-House Full Transient Model for Radiant Systems Coupled to a Modulating Heat Pump

机译:通过内部全瞬变模型对耦合至调制热泵的辐射系统进行建筑能耗模拟

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摘要

Radiant heating coupled to a heat pump is a particularly energy-efficient system, recommended in new constructions. However, the potential energy savings associated with this high thermal inertia system can only be achieved with appropriate control laws, to be tested in a full building–plant simulation environment. The developed transient code concurrently solves three tailored dynamic models of each involved sub-system, namely: building envelope (a benchmark room defined by ISO 13791), radiant floor (designed in accordance with EN 1264-2), and heat pump (an air-to-water electrically-driven modulating unit). Different control strategies were implemented, such as variation of internal temperature set-point dead band, supply temperature to radiant panels, and heating modes. Among the examined variables, we found that the higher energy savings (up to 15%) can be obtained by a proper choice of the supply temperature: in particular, fixed supply temperature should be preferred to climate-based control for this case study. The developed model can be used for optimal design of new systems and associated controls and for accurate energy audits of existing buildings employing these technological solutions.
机译:辐射加热与热泵耦合是一种特别节能的系统,建议在新结构中使用。但是,只有通过适当的控制定律才能实现与这种高热惯性系统相关的潜在能源节省,并在完整的建筑-工厂模拟环境中进行测试。所开发的瞬态代码同时解决了每个涉及子系统的三个定制的动态模型,分别是:建筑围护结构(ISO 13791定义的基准房间),辐射地板(根据EN 1264-2设计)和热泵(空气) -水电驱动的调制单元)。实施了不同的控制策略,例如内部温度设定点死区的变化,辐射板的供应温度以及加热模式。在检查的变量中,我们发现通过适当选择供应温度可以获得更高的节能量(最多15%):在此案例研究中,尤其应该选择固定的供应温度,而不是基于气候的控制。开发的模型可用于新系统和相关控件的最佳设计,以及采用这些技术解决方案的现有建筑物的准确能源审核。

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