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首页> 外文期刊>Chemistry central journal >Microclimate monitoring in the Carcer Tullianum: temporal and spatial correlation and gradients evidenced by multivariate analysis; first campaign
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Microclimate monitoring in the Carcer Tullianum: temporal and spatial correlation and gradients evidenced by multivariate analysis; first campaign

机译:Tullianum的小气候监测:多变量分析证明的时空相关性和梯度;第一次竞选

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Too often microclimate studies in the field of cultural heritage are published without any or scarce information on sampling design, sensors (type, number, position) and instrument validation. Lacking of this fundamental information does not allow an open discussion in the scientific community. This work aims to be an invitation for a different approach. Three main parameters (temperature, humidity, luminance) were monitored in a selected part of a complex construction by an inexpensive self-assembled system along some horizontal and vertical vectors. All data was then processed and analyse by chemometric methods. Some measurements of oxygen, carbon monoxide and dioxide and pressure were also performed. Correlation of some indoor and outdoor data was shown for temperature and humidity. In case of outdoor changes the indoor environment reacted with a certain delay which is position-dependent and more evident for humidity data. The two observed rooms (Carcer and Tullianum) behave differently and the hypogean one is less influenced by the outdoor environment. Instrument validation before and after the campaign, allows to consider detected variations as significant. The fundamental importance of Sampling Design and of instrument validation before and after the monitoring campaign was enhanced. The choice of two main and two minor vectors allowed detection of different behaviour for the two rooms, also permitting to detect for both rooms a trend towards a spontaneous microclimate necessary for a conservation project. In the next campaign we will focus on the choice of the best sampling frequency to use more sophisticated statistical methods.
机译:在文化遗产领域的微气候研究经常发布,而没有关于采样设计,传感器(类型,数量,位置)和仪器验证的任何信息或稀缺信息。缺少这些基本信息将无法在科学界进行公开讨论。这项工作旨在邀请采用其他方法。通过廉价的自组装系统,沿着一些水平和垂直矢量,在复杂结构的选定部分中监视了三个主要参数(温度,湿度,亮度)。然后处理所有数据并通过化学计量学方法进行分析。还进行了一些氧气,一氧化碳和二氧化碳以及压力的测量。显示了一些室内和室外数据与温度和湿度的相关性。在室外变化的情况下,室内环境以一定的延迟做出反应,该延迟取决于位置,并且对于湿度数据更明显。观察到的两个房间(Carcer和Tullianum)的行为有所不同,而次子房间受室外环境的影响较小。在运动前后进行仪器验证,可以将检测到的变化视为重要变化。监测活动前后的抽样设计和仪器验证的根本重要性得到了增强。选择两个主要向量和两个次要向量可以检测两个房间的不同行为,还可以检测两个房间的自然保护趋势。在下一个活动中,我们将专注于选择最佳采样频率以使用更复杂的统计方法。

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