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Observing Local-Scale Variability of Near-Surface Temperature and Humidity Using a Wireless Sensor Network

机译:使用无线传感器网络观察近地表温度和湿度的局部尺度变化

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In this paper the influence of surface type, wind speed, and other environmental conditions on near-surface air temperature, specific humidity, and surface temperature is studied. A wireless sensor network consisting of 13 low-cost meteorological stations was set up as a 2.3-km-long double transect in western Germany during the Fluxes and Patterns in the Soil-Vegetation-Atmosphere Scheme (FLUXPAT2009) campaign. This deployment covered various surface types, including a small river. It was found that the air temperature was mainly influenced by the distance to the river and that its variability is controlled by the wind speed. During the night, a pool of cold air formed in the valley close to the water. The specific humidity is also governed by proximity to the river, especially during the night and for low wind speeds. In contrast, the differences in surface temperature were caused by different land cover. These results can be confirmed by a cluster analysis. Setting up 13 stations in a relatively small area is not always feasible. In this study, an estimation of the error that is made by considering the effect of a reduced number of stations is given. Use of only a single station results in an error of 0.86 K in air temperature, 0.67 g kg(-1) in specific humidity, and 1.4 K in surface temperature.
机译:本文研究了地表类型,风速和其他环境条件对近地表空气温度,比湿度和地表温度的影响。在“土壤-植被-大气计划”(FLUXPAT2009)活动中,在德国西部建立了一个由13个低成本气象站组成的无线传感器网络,作为一个2.3公里长的双样带。该部署涵盖了各种表面类型,包括一条小河。研究发现,气温主要受距河的距离影响,而其可变性受风速控制。夜间,山谷中靠近水的地方形成了冷空气池。比湿度还取决于与河流的距离,特别是在夜间和低风速时。相反,表面温度的差异是由不同的土地覆被引起的。这些结果可以通过聚类分析来确认。在相对较小的区域中建立13个站并不总是可行的。在这项研究中,通过考虑减少站数的影响给出了对误差的估计。仅使用一个站会导致空气温度误差0.86 K,比湿度误差0.67 g kg(-1)和表面温度误差1.4K。

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