异质城市环境下ENVI-met模式对不同风向强迫数据敏感性的研究

Q2 Earth and Planetary Sciences Advances in Science and Research Pub Date : 2023-07-10 DOI:10.5194/asr-20-65-2023
Nils Eingrüber, W. Korres, U. Löhnert, K. Schneider
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引用次数: 0

摘要

摘要由于气候变化的影响,城市极端高温事件的发生频率显著增加,实施适应措施对城市规划具有重要意义。小气候模拟方法使情景分析和适应潜力评估成为可能。以德国科隆为研究区,以东部为封闭建筑结构,西部为城市公园为特征,建立了ENVI-met微气候模型。本文的目的是评估模型对不同风向强迫的敏感性和性能,并证明精确的风强迫数据对于用传感器测量评估精确的小气候模拟的重要性。为此,我们将利用实测风向强迫数据模拟的3米高度的气温与利用恒定风向强迫从西、北、东、南方向模拟的气温进行了比较。所有其他强迫数据,如风速,都与参考运行完全相同。这项敏感性研究是在2022年一个温暖的夏日进行的。所有五个模型运行(参考外加四个情景)的模型结果与位于研究区域的密集气象传感器网络的一个站点使用模拟的平均气温获得的小气候测量结果进行了比较。我们发现四种灵敏度测试与参考运行以及传感器测量之间存在显着的温度差异。参考运行与测量值之间的温差很小,可以确定较高的统计模型拟合(Nash sutcliffe模型效率系数/NSE = 0.91)。在恒定风向条件下,4个模式运行与实测数据的差异显著较大,模拟数据与观测数据的统计相关性较差(NSE在0.62 ~ 0.15之间)。对于持续的西风,在城市公园以及公园以东的街道和庭院中发现了较低的空气温度和较高的风速。持续的东风导致城市公园区域的空气温度升高,街道峡谷和内部庭院的风速降低。这表明,由于绿化城市公园,相邻建筑块的降温效果在很大程度上取决于风向。灵敏度试验表明,风向效应可导致局部气温差异平均达4 K。这些结果表明,即使在低风速的夏季,准确的风向数据也与准确的气温模拟高度相关。这一发现对城市规划和城市绿色基础设施的设计具有重要意义,例如设计新鲜空气走廊。
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Investigation of the ENVI-met model sensitivity to different wind direction forcing data in a heterogeneous urban environment
Abstract. As the frequency of extreme heat events in cities is significantly increasing due to climate change, the implementation of adaptation measures is important for urban planning. Microclimate modelling approaches enable scenario analyses and evaluations of adaptation potentials. An ENVI-met microclimate model was setup for a heterogeneous urban study area in Cologne/Germany characterized by closed building structures in the eastern part and an urban park area in the western part. The goal of this paper is to evaluate the model sensitivity and performance to different wind direction forcing and demonstrate the importance of accurate wind forcing data for precise microclimate modelling evaluated with sensor measurements. To this end, we compared simulated air temperatures at 3 m height level using measured wind direction forcing data with simulated air temperatures using constant wind direction forcing from west, north, east and south direction. All other forcing data like wind speed were kept exactly the same as in the reference run. This sensitivity study was performed for a warm summer day in 2022. The model results of all five model runs (reference plus four scenarios) were compared to microclimatological measurements derived from one station of a dense meteorological sensor network located in the study area using the simulated mean air temperatures. We found significant temperature differences between the four sensitivity tests and the reference run as well as to the sensor measurements. Temperature differences between the reference run and the measurements were small and a high statistical model fit could be determined (Nash Sutcliffe Model Efficiency Coefficient/NSE = 0.91). The four model runs with constant wind directions showed significantly larger differences to measurement data and a worse statistical correlation between simulated and observed data (NSE between 0.62 and 0.15). For constant west winds, cooler air temperatures and higher wind speeds were found in the urban park and in the streets and courtyards east of the park. Constant east wind causes warmer air temperatures in the urban park area and lower wind speeds in the street canyons and inner courtyards. This shows that cooling effects in adjacent building blocks due to the greened urban park largely depend on the wind direction. The sensitivity tests show that the wind direction effect can result in local air temperature differences of up to 4 K on average. These results shows that even on summer days with low wind speeds, accurate wind direction data is highly relevant for accurate air temperature simulation. This finding can have important implications for urban planning and the design of green infrastructures in cities, e. g. for the design of fresh air corridors.
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来源期刊
Advances in Science and Research
Advances in Science and Research Earth and Planetary Sciences-Geophysics
CiteScore
4.10
自引率
0.00%
发文量
13
审稿时长
22 weeks
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