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Thermal Response of Jointed Rock Masses Inferred from Infrared Thermographic Surveying (Acuto Test-Site Italy)

机译:红外热成像测量推断节理岩体的热响应(意大利阿库托试验场)

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摘要

The Mediterranean region is affected by considerable daily and seasonal temperature variations due to intense solar radiation. In mid-seasons, thermal excursions can exceed tens of degrees thus influencing the long-term behaviour of jointed rock masses acting as a preparatory factor for rock slope instabilities. In order to evaluate the thermal response of a densely jointed rock-block, monitoring has been in operation since 2016 by direct and remote sensing techniques in an abandoned quarry in Acuto (central Italy). Monthly InfraRed Thermographic (IRT) surveys were carried out on its exposed faces and along sections of interest across monitored main joints. The results highlight the daily and seasonal cyclical behaviour, constraining amplitudes and rates of heating and cooling phases. The temperature time-series revealed the effect of sun radiation and exposure on thermal response of the rock-block, which mainly depends on the seasonal conditions. The influence of opened joints in the heat propagation is revealed by the differential heating experienced across it, which was verified under 1D and 2D analysis. IRT has proved to be a valid monitoring technique in supporting traditional approaches, for the definition of the surficial temperature distribution on rock masses or stone building materials.
机译:由于强烈的太阳辐射,地中海地区受到每日和季节性温度变化的影响。在旺季,热偏移可能超过数十度,因此影响了节理岩体的长期行为,而节理岩体是岩石边坡失稳的预备因素。为了评估密集节理岩石块的热响应,自2016年以来一直通过直接和遥感技术对阿库托(意大利中部)的一个废弃采石场进行监测。每月对红外热成像(IRT)进行调查,其暴露面和受监测主要关节沿感兴趣的部分。结果突出了每日和季节性的周期性行为,限制了加热和冷却阶段的幅度和速率。温度时间序列揭示了太阳辐射和暴露对岩石块热响应的影响,这主要取决于季节条件。一维和二维分析已验证了打开的缝隙在传热中的影响,通过在缝隙中经历的不同加热来揭示。对于定义岩体或石材建筑材料的表面温度分布,IRT已被证明是支持传统方法的有效监视技术。

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