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Multi-Sensor UAV Application for Thermal Analysis on a Dry-Stone Terraced Vineyard in Rural Tuscany Landscape

机译:多传感器无人机在托斯卡纳乡村景观干石梯田葡萄园热分析中的应用

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Italian dry-stone wall terracing represents one of the most iconic features of agricultural landscapes across Europe, with sites listed among UNESCO World Heritage Sites and FAO Globally Important Agricultural Heritage Systems (GIAHS). The analysis of microclimate modifications induced by alterations of hillslope and by dry-stone walls is of particular interest for the valuation of benefits and drawbacks of terraces cultivation, a global land management technique. The aim of this paper is to perform a thermal characterization of a dry-stone wall terraced vineyard in the Chianti area (Tuscany, Italy), to detect possible microclimate dynamics induced by dry-stone terracing. The aerial surveys were carried out by using two sensors, in the Visible (VIS) and Thermal InfraRed (TIR) spectral range, mounted on Unmanned Aerial Vehicles (UAVs), with two different flights. Our results reveal that, in the morning, vineyard rows close to dry-stone walls have statistically lower temperatures with respect to the external ones. In the afternoon, due to solar insulation, temperatures raised to the same value for each row. The results of this early study, jointly with the latest developments in UAV and sensor technologies, justify and encourage further analyses on local climatic modifications in terraced landscapes.
机译:意大利的干石砌墙梯田是欧洲农业景观最具标志性的特征之一,其遗址被列入联合国教科文组织世界遗产和粮农组织全球重要农业遗产系统(GIAHS)。由坡地和干石墙的变化引起的微气候变化的分析对于梯田耕作(一种全球土地管理技术)的优缺点的评估尤为重要。本文的目的是对基安蒂地区(意大利托斯卡纳)的干石墙梯田葡萄园进行热特性分析,以检测由干石梯田引起的微气候动态。空中勘测是通过使用可见光(VIS)和热红外(TIR)光谱范围内的两个传感器进行的,这些传感器安装在无人飞行器(UAV)上,并进行两次不同的飞行。我们的结果表明,早晨,靠近干石墙的葡萄园排的温度相对于外部温度要低。下午,由于太阳能隔热,每行温度都升高到相同的值。这项早期研究的结果与无人机和传感器技术的最新发展相结合,证明并鼓励对梯田景观中的局部气候变化进行进一步分析。

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