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Meta-models for rapid appraisal of the benefits of urban greening in the European context

机译:欧洲背景下城市绿化效益快速评价的元模型

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Study regionThis study considers daily time series of 14 years of weather parameters (temperature, wind speed, rainfall, vapor pressure and radiation) for 671 functional urban areas (FUA) across Europe, from a latitude of 35° (Cyprus) to 65° (Finland).Study focusQuantification of urban greening effects usually requires relatively complex and integrated models. In this contribution, we apply well-established hydrological, biomass and energy balance equations to derive meta-models for the estimation of runoff reduction, urban surface heating and thermal protection of buildings, in order to quantify the effects of the greening of 1?m2of impervious surface (e.g. roofs, sealed ground surfaces and underground parking lots).New hydrological insights for the regionWe propose empirical meta-models for the quick appraisal of urban greening benefits including: urban runoff reduction due to soil water retention and evapotranspiration, land surface temperature reduction, reduction of the indoor temperature beneath the greened surface, dry biomass growth. We show that the choice of vegetation growth parameters has a limited effect on the results, although the amount of produced bulk biomass obviously depends on vegetation type. The proposed meta-models can be applied for the assessment of urban greening benefits at the stage of policy evaluation, land planning and the programming of investments at regional or continental scale, before undertaking more detailed and site-specific calculations as required in the design phase.
机译:研究区学习考虑了每日时间序列(温度,风速,降雨,蒸汽压力和蒸气压和辐射),在欧洲的671个功能城市地区(FUA),从35°(塞浦路斯)到65°(芬兰)。城市绿化效果的树焦焦化通常需要相对复杂和综合的模型。在这一贡献中,我们将建立的水文,生物质和能量平衡方程应用于估算径流减少,城市表面加热和建筑物的热保护的Meta模型,以量化绿化的效果1?M2OF不透水的表面(例如屋顶,密封地面和地下停车场)。地区的新水文见解为城市绿化益处的快速评估提出了经验的元模型,包括:土壤水保留和蒸散,土地表面温度降低城市径流减少减少,降低绿化表面下的室内温度,干生物质生长。我们表明,植被生长参数的选择对结果影响有限,尽管产生的散装生物质的量显然取决于植被类型。拟议的元模型可用于在政策评估,土地规划和区域或大陆规模的投资方案的阶段评估城市绿化利益,在设计阶段所需的更详细和现场特定的计算之前。

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