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A Proposal for New Microclimate Indexes for the Evaluation of Indoor Air Quality in Museums

机译:关于博物馆室内空气质量评估的新微气候指数的建议

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A correct artwork preservation requires strict values of several microclimate parameters, in particular temperature, humidity, and light. In existing museums, the evaluation of the effectiveness of current building plant systems and management is essential to avoid artwork deterioration. In this work, we propose the use of five simple performance indexes that use monitored data to estimate the suitability of the whole museum system in the maintenance of benchmark values of temperature, humidity, and light. The new indexes also take into account microclimate daily span and spatial homogeneity, which can represent a criticality in the preservative process. We apply these new indexes to the results of a monitoring campaign in Palazzo Blu, a museum in Pisa, which lasted for almost four months during a temporary exhibition on Toulouse-Lautrec works. The indexes show a mainly acceptable instantaneous microclimate, but HVAC (Heating, Ventilating and Air Conditioning) system improvement is necessary to avoid high thermo-hygrometric daily span. This methodology is useful for the identification of microclimate criticalities and can help the cooperation between conservation experts and professionals giving hints to improve museum internal microclimate. In case ofalready optimal microclimate, these indexes can be useful in more complex analyses, including simulations of possible retrofit actions, keeping microclimate suitability as a constraint.
机译:正确的艺术品保存要求几个微气候参数(尤其是温度,湿度和光线)的严格值。在现有博物馆中,对当前建筑设备系统和管理有效性的评估对于避免艺术品恶化至关重要。在这项工作中,我们建议使用五个简单的性能指标,这些指标使用监视的数据来估计整个博物馆系统在维持温度,湿度和光线的基准值方面的适用性。新指标还考虑到了小气候的每日跨度和空间均匀性,这可能代表了防腐过程的关键。我们将这些新索引应用于比萨博物馆Palazzo Blu的监视活动的结果,该活动在关于图卢兹-劳特累克作品的临时展览中持续了将近四个月。该指数显示了一个主要可接受的瞬时微气候,但是必须对HVAC(供暖,通风和空调)系统进行改进,以避免高的日温湿度。这种方法学对于识别小气候临界点很有用,并且可以帮助保护专家和专业人士之间的合作,为改善博物馆内部的小气候提供提示。在已经存在最佳微气候的情况下,这些指标可用于更复杂的分析,包括可能的改造措施的模拟,并保持微气候适用性为约束。

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