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Moisture-safe attic design in extremely cold climate: Hygrothermal simulations

机译:极冷气候的水分安全阁楼设计:湿热模拟

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Attic ventilation is a commonly used method for the removal of moisture build-up in attics through air leakage from indoors, which is generally applied to cold climates. Un-ventilated attic is a fully sealed construction, which can prevent wind-driven rain penetration or snow accumulation. However, it does not provide an effective path for moisture removal, which may cause moisture-related issues. Northern Canada suffers from extremely cold conditions and very fine snow particles caused by extremely low temperature have high chances of penetrating into attics through vents or un-intentional openings during periods of high winds. To provide adequate attic design recommendations for this climate, hygmthermal models of ventilated and un-ventilated attics were firstly validated by comparing with field measurements and then used for a parametric study. The attic ventilation rate, ceiling air leakage rate and un-intentional air infiltration rate are set as variables for the parametric study to evaluate their effect on the hygrothermal performance of attics. Mold growth index (MGI) on sheathing is used as the performance indicator. For the ventilated attic, there is no mold growth risk, while for the un-ventilated attic, the MGI increases with the increase of ceiling air leakage rates and the decrease of un-intentional air infiltration rates. North-facing roof sheathing has higher MGI compared to south-facing sheathing. The parametric study results show that attic ventilation is required for the extremely cold climate and an un-ventilated attic has greater risks of moisture problems unless the ceiling air leakage from indoors is well controlled.
机译:阁楼通风是一种常用的方法,用于通过室内空气泄漏去除仪器中的水分积聚,这通常适用于寒冷气候。无通风的阁楼是一种完全密封的结构,可以防止风力驱动的雨水渗透或积雪。然而,它不提供用于水分的有效路径,这可能导致水分相关的问题。加拿大北部患有极冷的条件,非常低温引起的雪颗粒非常高,在高风时期穿过通风口或不故意开口的仪器渗透到阁楼。为此气候提供充足的阁楼设计建议,首先与现场测量相比,首先验证通风和不通风仪器的卫生型号,然后用于参数研究。阁楼通风率,天花板空气泄漏率和紫外线空气渗透率被设定为参数研究的变量,以评估它们对阁楼湿热性能的影响。鞘鞘上的模具生长指数(MGI)用作性能指标。对于通风阁楼,没有模具生长风险,而对于未通风的阁楼,MGI随着天花板空气泄漏速率的增加和紫外线空气渗透率的降低而增加。与朝南护套相比,朝北屋顶护套具有更高的MGI。参数研究结果表明,阁楼通风是极其寒冷的气候,无风通风的阁楼具有更大的水分问题风险,除非来自室内的天花板空气泄漏良好控制。

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