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The energy balance of an urban area: Examining temporal and spatial variability through measurements, remote sensing and modeling.

机译:市区的能量平衡:通过测量,遥感和建模检查时间和空间变化。

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Urban environmental problems related to air quality, thermal stress, issues of water demand and quality, all of which are linked directly or indirectly to urban climate, are emerging as major environmental concerns at the start of the 21st century. Thus there are compelling social, political and economic, and scientific reasons that make the study and understanding of the fundamental causes of urban climates critically important. This research addresses these topics through an intensive study of the surface energy balance of Lodz, Poland. The research examines the temporal variability in long-term measurements of urban surface-atmosphere exchange at a downtown location and the spatial variability of this exchange over distinctly different neighborhoods using shorter-term observations. These observations provide the basis for an evaluation of surface energy balance models.; Monthly patterns in energy exchange are consistent from year-to-year with variability determined by net radiation and the timing and amount of precipitation. Spatial variability can be determined from plan area fractions of vegetation and impervious surface, though heat storage exerts a strong control on shorter term variability of energy exchange, within and between locations in an urban area. Anthropogenic heat fluxes provide most of the energy driving surface-atmosphere exchange in winter, From a modeling perspective, sensible heat fluxes can be reliably determined from radiometrically sensed surface temperatures and spatially representative surface-atmosphere exchange in an urban area can be determined from satellite remote sensing products. Models of the urban surface energy balance showed good agreement with mean values of energy exchange and under most conditions represented the temporal variability due to synoptic and shorter time scale forcing well.
机译:与空气质量,热应力,需水量和质量有关的城市环境问题,都与城市气候直接或间接相关,在21世纪初已成为主要的环境问题。因此,有令人信服的社会,政治,经济和科学原因,使得研究和理解城市气候的根本原因至关重要。通过深入研究波兰罗兹的表面能平衡,本研究解决了这些主题。该研究使用短期观测资料,对市区中心地表大气交换的长期测量中的时间变化以及在明显不同的邻域中这种交换的空间变化进行了研究。这些观察结果为评估表面能平衡模型提供了基础。能量交换的月度模式逐年保持一致,其可变性取决于净辐射以及降水的时间和数量。空间可变性可以通过植被和不透水表面的平面面积分数来确定,尽管储热对城市区域内和城市之间的能量交换的短期可变性具有强大的控制作用。在冬季,人为的热通量提供了大部分能量驱动地表与大气的交换。从建模的角度来看,可以根据辐射测量的地表温度可靠地确定有意义的热通量,而可以从卫星远程站点确定市区中具有空间代表性的地表-大气交换情况。感应产品。城市地表能量平衡的模型与能量交换的平均值显示出良好的一致性,并且在大多数情况下都表现为时间变化,这是由于天气天气和较短的时间尺度强迫所致。

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