自然通风石灰抹灰房屋的水分缓冲和霉菌生长特性。

UCL open environment Pub Date : 2024-09-10 eCollection Date: 2024-01-01 DOI:10.14324/111.444/ucloe.1988
Vismaya Paralkar, Rashmin Damle
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引用次数: 0

摘要

石灰抹灰是一种可持续的建筑材料,可以作为一种有效的被动降温策略。石灰的湿气缓冲特性可以吸附和解吸湿气,从而调节室内相对湿度。它的透汽性也会影响湿气在建筑围护结构中的传递。石灰抹灰还具有自愈性,可防止内部裂缝的形成。此外,它的强度会随着时间的推移而增加,从而延长使用寿命。在古建筑中,天花板和墙壁的透气性是一项重要功能。因此,它经常被用于保护项目中,以改善古建筑的外观和耐久性。为了赋予石灰砂浆/灰泥某些品质而使用的有机添加剂往往会导致霉菌滋生。霉菌生长会降低室内空气质量,影响居住者的健康。为了避免与霉菌有关的问题,有必要了解石灰抹灰在室内相对湿度和表面含水量方面的表现。本文重点研究了自然通风住宅空间中石灰抹灰的湿热性能。在印度艾哈迈达巴德的 45 栋传统建筑中进行了调查,测量了温度、相对湿度、墙壁含水率等环境变量。这些空间的霉菌生长模式与测量变量和墙体特征有关。还对一些空间进行了湿热模拟,以观察石灰抹灰的湿度缓冲作用。然后将实验观察结果与模拟结果进行比较,以确定湿热模型的预测是否符合实际情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Moisture buffering and mould growth characteristics of naturally ventilated lime plastered houses.

Lime plaster is a sustainable building material that can be an effective passive cooling strategy. The moisture buffering quality of lime causes adsorption and desorption of moisture which moderates the indoor relative humidity. Its vapour permeability is also influential in moisture transfer across the building envelope. Lime plaster also has a self-healing quality which prevents the formation of inner cracks. Moreover, its strength increases with time leading to a longer life span. In old structures, an important function is the breathability of ceilings and walls. Hence, it is often used in conservation projects where it improves the appearance and durability of old buildings. Often organic additives employed to impart certain qualities to the lime mortar/plaster led to mould growth. Mould growth degrades indoor air quality, and the occupant health is compromised. To avoid mould-related problems, it is necessary to understand the behaviour of lime plaster with respect to the indoor relative humidity and surface moisture content. This paper focuses on the hygrothermal performance of lime plaster in naturally ventilated residential spaces. Surveys were carried out in 45 traditional buildings in Ahmedabad in India with measurements of ambient variables, such as temperature, relative humidity, wall moisture content, etc. The mould growth patterns of these spaces are related to the measured variables and wall characteristics. Hygrothermal simulations of some spaces were also carried out to observe the moisture buffering of lime plaster. Experimental observations were then compared to simulation results to see if the predictions of the hygrothermal models were realistic.

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