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Feasibility of Using Wood Chips to Regulate Relative Humidity Inside a Building: A Numerical Study

机译:使用木屑来调节建筑物内相对湿度的可行性:数值研究

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The use of bio-based materials in buildings has become more and more significant last years.In most of the cases,their health properties and natural provenance have made them a great solution to face global climate warming and the new policies to reduce building energy consumption.In many thermal problems,biobased materials can allow to optimize the building thermal behavior according to its energy consumption and inside comfort conditions.So it is when they are used as an insulation material in the building.However,it is not the case in this paper.In fact,the bio-based matter is rather used as a desiccant wheel to control air conditioning inside the building.The aim of this paper is to numerically verify if it is possible to use a bed of wood chips as a hygroscopic material(or a desiccant matter)in order to modify the relative humidity inside the building in Reunion Island and so improve thermal comfort.A simple model of heat and mass transfer between a bed of wood chips and building inside air has been set up and implemented into a validated building simulation code named ISOLAB.Numerical simulations were set up for the four climate zones of the island regulations and a focus has been made on the low altitude one(with high,solar irradiation,temperature and relative humidity).Simulation results give the thermal behavior of the building particularly the temperature and relative humidity of inside air temperature,and temperature and moisture content of wood chips.The obtained results lead to determine if the wood chips bed is suitable for the reference building and to verify its technical feasibility(wood species,size of the bed,integration to the building,etc.).The results show that the use of a WCB help to decrease the building inside air temperature and water content up to 10°C less and 11.6 g.kg-1 less.These are the ways to improve inside comfort conditions.Indeed,comfort analysis have shown the possibility to significantly increase building users’thermal comfort when coupled with a fan and natural ventilation,like the regulation needs for low altitude climate.In this case,a gain of 68%of year time is achieved for a building equipped with WCB system compared to one without it(6308 hours of comfort over a year with the WCB against 350 hours without WCB).So the WCB seems to be able to help reducing cooling loads in tropical climate conditions.
机译:过去几年的建筑物中基于生物的材料已经变得越来越重要。在大多数情况下,他们的健康特性和自然来源使他们成为面对全球气候变暖和降低建筑能源消耗的新政策的伟大解决方案。在许多热量问题中,生物化材料可以根据其能量消耗和内部舒适条件来优化建筑物热行为。所以它们是在建筑物中的绝缘材料时。但是,这不是这样的事实上,基于生物的物质被用作干燥的轮子,以控制建筑物内的空调。本文的目的是在数值上验证是否有可能使用木材碎片作为吸湿材料(或者干燥剂的物质)为了改变团聚岛的建筑物内的相对湿度,因此提高了热舒适性。木屑和建筑物床之间的简单热量和大规模转移模型已经建立并实施了内部空气并实施到了名为Isolab.numerical模拟的验证的建筑模拟代码中,为岛法规的四个气候区建立了一个,并在低空拍摄了一个重点(具有高,太阳照射,温度和相对湿度)。仿效结果给出了建筑物的热行为,特别是内部气温的温度和相对湿度,以及木屑的温度和水分含量。获得的结果导致木屑床适用于参考建设和验证其技术可行性(木材种类,床大小,融入建筑物等)。结果表明,使用WCB有助于将内部空气温度和水含量的建筑物减少到10°C较少,11.6 G.kg-1少。这些是改善内部舒适条件的方法。舒适性分析表明,有可能显着提高建设用户热情的舒适性当加上风扇和自然通风时,与低空气候的调节需求一样。在这种情况下,对于一个没有它的一个没有它的建筑,可以获得68%的时间为68%的时间(6308小时的舒适) WCB与350小时的一年,没有WCB)。所以WCB似乎能够帮助减少热带气候条件下的冷却载荷。

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