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Environmental monitoring of a Sardinian earthen dwelling during the summer season

机译:夏季撒丁岛土地的环境监测

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Increasing interest in earth architecture has led to the development of new international norms regarding these structures. Although Italy has no specific legislation for this building type, both national laws for the safeguard of rural architecture and regional norms regarding the conservation of historical centers have considerably slowed down the pace of their destruction. This is particularly true for Sardinia, which maintains a conspicuous heritage of "raw earth" architecture, mostly in the old town centers of the Campidano plain and in its adjacent valley. Due to the current legislation on energy efficiency in buildings, it has become essential - particularly for the Sardinian region - to define guidelines for the improvement of energy efficiency for this existing building heritage and identify the best parameters for their energetic classification. Currently, these constructions are heavily penalized by the gap that persists between the requirements of current energy balance evaluations, calculated upon heating and domestic hot water energy demands, and the actual year-round energy performance, which also includes the summer season. Moreover, this building type has a low lifecycle environmental impact, but this aspect is not properly "rewarded" by Italian regulations. The study proposed herein firstly took into account the simulation of the thermal transient characteristics of the adobe wall (brick made of clay, earth and straw, forged with wooden molds and sun dried). Analytical calculations were performed using a transient model, assuming sinusoidal behavior of all the parameters acting on the system. The results showed a high thermal inertia of the material and a good ability in dampening the external thermal wave. Next, we conducted an internal and external environmental monitoring of an existing earthen residential building in Sardinia ("Casa Mancosu", Serramanna, VS), which provided the experimental data for the evaluation of the whole building thermo-physical behavior. The measurements were taken during the 2010 summer season; the dwelling was not cooled by an air conditioning system. Thermal comfort analyses based on these experimental data indicate that the roof is the "weak" component, creating local discomfort due to radiant asymmetry. The described methodology is expected to be applicable also to the many buildings of this geographical area similar to the examined one.
机译:在地球架构越来越多的关注,导致了对这些结构的新的国际准则发展。尽管意大利有没有这种建筑类型的专门立法,对农村建筑和有关的历史中心的保护区域规范的保障两个国家的法律已经大大放缓销毁的步伐。这是特别真实的撒丁岛,它保持“原始地球”的体系结构的一个显着的遗产,大多在坎皮达诺普通的老城区中心,并在其邻近的山谷。由于对建筑节能的现行法律,它已成为必不可少的 - 特别是撒丁岛地区 - 定义为能源效率的提高这一现有建筑遗产的指导方针,并确定他们的精力充沛的分类的最佳参数。目前,这些结构在很大程度上受到惩罚的差距,目前的能量平衡评估的要求,在采暖和生活热水的能源需求计算,和实际的全年节能性能,其中还包括夏季之间依然存在。此外,这种建筑类型具有低生命周期对环境的影响,但是这方面没有正确意大利条例“奖励”。在此提出的研究首先考虑到的土坯墙的热瞬态特性模拟(砖制成的粘土,泥土和稻草,用木制模具和太阳干燥伪造的)。使用瞬态模型,假设作用在系统上的所有参数的正弦行为进行分析计算。结果表明,该材料的高的热惯性,在阻尼的外部热波良好的能力。接下来,我们进行了现有土住宅建筑撒丁岛(将“Casa Mancosu”的Serramanna,VS),这对于整个建筑物的热物理特性的评价提供了实验数据的内部和外部的环境监测。在测量过程中,2010年夏季拍摄;该住宅不是由空调系统冷却。热舒适性分析基于这些实验数据表明,屋顶是“弱”的成分,创造局部不适,由于辐射的不对称性。所描述的方法预期也适用于类似检查这一个地理区域的许多建筑物。

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