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图利亚努姆监狱小气候监测的第二次活动:多变量分析证明的时间和空间相关性及梯度

Second campaign of microclimate monitoring in the carcer tullianum: temporal and spatial correlation and gradients evidenced by multivariate analysis.

作者信息

Visco Giovanni, Plattner Susanne Heidi, Fortini Patrizia, Sammartino Maria Pia

机构信息

Rome University, La Sapienza, Math, Phy, Nat, Science Faculty, Piazzale A,Moro 5, 00185, Rome, Italy.

出版信息

Chem Cent J. 2012 Sep 18;6(1):104. doi: 10.1186/1752-153X-6-104.

Abstract

BACKGROUND

This paper discusses results obtained in the second monitoring campaign of the Carcer Tullianum, a particular hypogeum environment located in the historical centre of Rome (Italy). In the first paper we stressed the need to apply chemometric tools to this kind of studies in order to obtain full and significant information; really information on sampling design, sensors (type, number, position) and instrument validation seems to be not easy to find in literature for researches dealing with monitoring of indoor environments.Also in this case three main parameters (temperature, humidity, illuminance) were monitored in the complex construction by an inexpensive self-assembled system along some horizontal and vertical vectors together with some measurements of oxygen, carbon dioxide and barometric pressure.With respect to the first campaign, we used a higher number of sensors to cover a new excavated zone; for the same reason, as well as to take into account the presence of visitors, a different experimental design was adopted.

RESULTS

Different data treatments were applied to data coming from all the used sensors. A good view of the microclimate was obtained that also resulted coherent with the different position of the three rooms constituting the monitored site (Carcer, Tullianum, Convent). Classical time plots resulted useful to evidence the correlation of the main monitored parameters (T, RH% and illuminance) with macroclimate, as well as their delay in following macroclimate. Box-Whisker and Gain-Loss graphs evidenced at the best the microclimate differences between the three rooms; an almost hypogean microclimate was evidenced for the lower room (Tullianum) where humidity values range between 90 and 100% while lower values, but anyway higher than the external, and spread more widely were measured passing to Convent and Carcer with minimum values around 50% for the last. A scarce or very scarce correlation with macroclimate was evidenced for all the three main measured parameters. Lighting results mainly dependent on artificial light and only in few cases, but unfortunately in the most precious zone, illuminance exceeds values suggested by Normative.

CONCLUSIONS

Box-Whisker and Gain-Loss graphs allowed us to have the best view of the microclimate for all the monitored rooms. The influence of lighting by lamps on the other monitored parameters resulted overlapped and clearly topped the solar one. The worst situation was found in the Carcer, where the presence of the main chandelier worsens the state of the frescoed walls, already subjected to wide changes in temperature and humidity. Also the lighthouse located above the Convent provokes lighting exceeding values suggested by Normative while, as expected, LEDs resulted as suitable source of light from a conservation point of view.Susanne Heidi Plattner, Patrizia Fortini and Maria Pia Sammartino contributed equally to this work.

摘要

背景

本文讨论了图利亚努姆监狱第二次监测活动所取得的成果,该监狱是位于意大利罗马历史中心的一个特殊地下环境。在第一篇论文中,我们强调了将化学计量工具应用于这类研究的必要性,以便获得全面且有意义的信息;实际上,对于处理室内环境监测的研究而言,关于采样设计、传感器(类型、数量、位置)以及仪器验证的信息在文献中似乎并不容易找到。在这种情况下,同样通过一个廉价的自组装系统沿着一些水平和垂直向量,对该复杂建筑中的三个主要参数(温度、湿度、照度)进行了监测,并对氧气、二氧化碳和气压进行了一些测量。与第一次监测活动相比,我们使用了更多数量的传感器来覆盖一个新挖掘的区域;出于同样的原因,以及考虑到游客的存在,我们采用了不同的实验设计。

结果

对来自所有使用传感器的数据进行了不同的数据处理。获得了对微气候的良好观察结果,这也与构成监测地点(监狱、图利亚努姆监狱、修道院)的三个房间的不同位置相一致。经典的时间图有助于证明主要监测参数(温度、相对湿度和照度)与大气候的相关性,以及它们跟随大气候的延迟情况。箱线图和增益 - 损失图最能证明三个房间之间的微气候差异;较低层的房间(图利亚努姆监狱)呈现出几乎类似地下的微气候,其湿度值在90%至100%之间,而随着向上到修道院和监狱,湿度值降低,但无论如何都高于外部环境,且分布范围更广,监狱的湿度最小值约为50%。所有三个主要测量参数与大气候的相关性都很弱或非常弱。照明结果主要取决于人工照明,仅在少数情况下,不幸的是在最珍贵的区域,照度超过了规范建议的值。

结论

箱线图和增益 - 损失图使我们能够对所有监测房间的微气候有最好的了解。灯具照明对其他监测参数的影响相互重叠,且明显超过了阳光的影响。最糟糕的情况出现在监狱,那里主吊灯的存在使已经受到温度和湿度大幅变化影响的壁画墙面状况恶化。同样,修道院上方的灯塔也导致照明超过规范建议的值,而正如预期的那样,从保护的角度来看,发光二极管是合适的光源。苏珊娜·海蒂·普拉特纳、帕特里齐亚·福尔蒂尼和玛丽亚·皮娅·萨马蒂诺对这项工作的贡献相同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb2a/3495703/fed631f316ca/1752-153X-6-104-1.jpg

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