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首页> 外文期刊>Earth System Science Data Discussions >In situ air temperature and humidity measurements over diverse land covers in Greenbelt, Maryland, November?2013–November?2015
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In situ air temperature and humidity measurements over diverse land covers in Greenbelt, Maryland, November?2013–November?2015

机译:2013年11月至2013年11月于马里兰州格林贝尔特的不同土地覆被的原位空气温度和湿度测量

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摘要

As our climate changes through time there is an ever-increasing need to quantify how and where it is changing so that mitigation strategies can be implemented. Urban areas have a disproportionate amount of warming due, in part, to the conductive properties of concrete and asphalt surfaces, surface albedo, heat capacity, lack of water, etc. that make up an urban environment. The NASA Climate Adaptation Science Investigation working group at Goddard Space Flight Center in Greenbelt, MD, conducted a study to collect temperature and humidity data at 15?min intervals from 12 sites at the center. These sites represent the major surface types at the center: asphalt, building roof, grass field, forest, and rain garden. The data show a strong distinction in the thermal properties of these surfaces at the center and the difference between the average values for the center compared to a local meteorological station. The data have been submitted to Oak Ridge National Laboratory Distributed Active Archive Center (ORNL-DAAC) for archival in comma separated value (csv) file format (Carroll et al., 2016) and can be found by following this link: http://daac.ornl.gov/cgi-bin/dsviewer.pl?ds_id=1319.
机译:随着我们的气候随着时间的推移而变化,人们越来越需要量化其变化方式和变化方式,以便实施缓解策略。城市区域的变暖程度不成比例,部分原因是混凝土和沥青表面的导电特性,表面反照率,热容,缺水等构成了城市环境。位于马里兰州格林贝尔特的戈达德太空飞行中心的NASA气候适应科学调查工作组进行了一项研究,以15分钟的间隔从中心的12个站点收集温度和湿度数据。这些站点代表了中心的主要表面类型:沥青,建筑物屋顶,草地,森林和雨林。数据显示,中心处这些表面的热特性与中心气象平均值相比与本地气象站之间存在明显差异。数据已以逗号分隔值(csv)文件格式提交给Oak Ridge国家实验室分布式主动归档中心(ORNL-DAAC)进行归档(Carroll等,2016),可通过以下链接找到:http:/ /daac.ornl.gov/cgi-bin/dsviewer.pl?ds_id=1319。

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