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Water masses surface temperatures assessment and their effect on surrounding environment

机译:水群体表面温度评估及其对周围环境的影响

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The aim of this study was to evaluate the effect of water masses on the surface temperature with direct impact on the surrounding area. Three systems were used for the study: a fully vegetated system (subsurface flow constructed wetland (CW)), a lake with no vegetation and a lake partially vegetated with Lemna minor. Infrared thermography was applied for the different systems analysis, allowing the determination of the surface temperature spatial distribution. In general, the presence of plants and water in the analyzed systems contributed to lowering the surface temperatures when comparing to its surroundings. Differences up to about 22 degrees C were observed in the temperature between the CW canopy and the surrounding soil, and up to about 19 degrees C between the lake and the surrounding border. Different plant species (Canna flaccida, Canna indica and Zantedeschia aethiopica) inhabiting the CW were also compared and slightly higher average surface temperatures were observed for C. indica. The above mentioned results are relevant in terms of supporting a strategy for water systems inclusion, for example a lake or a CW, in a site as means of having influence in the surface temperature and to some extent in the heat island effect supporting a sustainable environmental management.
机译:本研究的目的是评估水量对表面温度的影响,直接影响周围地区。三个系统用于研究:一个完全植被的系统(地下流量构造的湿地(CW)),一个没有植被的湖泊,湖泊部分植被lemna未成年人。应用红外热成像用于不同的系统分析,允许确定表面温度空间分布。通常,分析系统中的植物和水的存在有助于降低与周围环境相比降低表面温度。在CW冠层和周围土壤之间的温度下观察到高达约22℃的差异,湖泊和周围边界之间的温度高达约19摄氏度。还比较了不同的植物物种(Canna Flaccida,Canna indica和Zantedeschia Aethiopica),并且对C.籼稻观察到略高的平均表面温度。上述结果与支持水系统纳入的策略(例如湖泊或CW)的策略相关是相关的,该策略是在支持可持续环境的热岛效果中具有影响的方法的手段。管理。

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