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A Simulation Study of Passively Heated Residential Buildings

机译:被动加热的住宅建筑模拟研究

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This research aims to gain understanding of the key design aspects in using renewable sources (e.g., geothermal and solar) for residential heating. To achieve this aim, a simulation study has been undertaken by using the EnergyPlus? software Version 8.1. First a brief review of the literature was carried out, which covers solar ground-source heat pump, solar-heated water, low-temperature wall and floor surface radiators, types of solar collector, fixed tilt versus solar tracker, and cost versus savings. Then the conceptual design idea and energy simulation process are described. Following this a simulation study of a 30 m2 one-bedroom simple house, as a case example was carried out. The results show that, with two surface radiators, a 30 m2 house would remain within the acceptable thermal comfort temperature range in winter. The simulation results also show that the floor radiator, fed with water from U-tube in deep ground warms the concrete-in-ground floor, which would otherwise be cold for more than half a year. The simulation results also show that the wall radiators, fed with water (stored in a 2 m3 indoor tank) heated by evacuated tubes make the indoors comfortable throughout the year. Furthermore, the results of additional 3-dimensional simulation show that, the creation of a thermal mass under the floor, using vertical insulation into the ground along its perimeter, may obviate the need of the floor radiator and borehole. In conclusion, the results of the simulation study show that it is feasible to utilise a combination of the renewable geothermal and solar energy to achieve indoor thermal comfort in houses. Future research is needed which includes validation of these simulations results with actual data collected from the case example and simulation study of more complex and larger scales residential houses.
机译:该研究旨在了解使用可再生来源(例如,地热和太阳能)进行住宅加热的关键设计方面的理解。为实现这一目标,通过使用EnergyPlus进行了模拟研究?软件版本8.1。首先进行了对文献的简要介绍,涵盖太阳能地面源热泵,太阳能加热的水,低温墙和地板散热器,太阳能收集器类型,固定倾斜与太阳能跟踪器,以及成本与节省成本。然后描述了概念设计思想和能量模拟过程。在此之后,通过对一个案例示例进行了30平方米一卧室简单房屋的仿真研究。结果表明,有两个表面散热器,30平方米的房屋将在冬季可接受的热舒适温度范围内保留在可接受的热舒适温度范围内。仿真结果还表明,地板散热器,从u-tube中加入水管中的水中的水中的碎片磨碎机,否则将冷却超过半年以上。仿真结果还表明,壁辐射器用水(储存在2m3室内罐中)通过抽空管加热,在整个年度舒适地使室内舒适。此外,额外的三维仿真结果表明,在地板下的产生,在地板下面的热质量沿着其周边的需要,可以避免地板散热器和钻孔的需要。总之,仿真研究结果表明,利用可再生地热和太阳能的组合是可行的,以实现房屋内的室内热舒适度。需要未来的研究,其中包括这些模拟的验证结果,从案例示例中收集的实际数据和更复杂和更大的尺度住宅房屋的仿真研究。

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