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Lake effect on summer cooling of shorelines and adjacent inland forests on Lake Superior’s north shore

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DataONE2023-12-11 更新2024-06-08 收录
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Climate refugia, or areas that are projected to remain relatively stable under climate change, can serve as remnant habitat or steeping stones for species dispersal. The largest freshwater lake in the world by surface area, Lake Superior, serves as a model system for understanding cooling-mediated local refugia, as its cool summer water temperatures and wave action have maintained shoreline habitats suitable for disjunct opulations for arctic-alpine plants since deglaciation. It is known to affect local climates by providing a summer cooling effect near its shorelines, however, the inland gradient of change and spatial patterns of cooling has not been quantified. Here, we describe the extent of the inland cooling gradient, the degree of temperature buffering, and patterns of cooling for Lake Superior's north shore over a 3-year period. Specifically, we established 7 transects along Lake Superior's north shore, with temperature data loggers placed at 10 m, 100 m, 1 km, 10 km, and 100 km ..., , , GENERAL INFORMATION 1. Dataset title: Lake effect on summer cooling of shorelines and adjacent inland forests on Lake Superior’s north shore 2. Author Information A. Corresponding Author Contact Information Name: Ashley Hillman Institution: University of Alberta Email: B. Principal Investigator Contact Information Name: Scott Nielsen Institution: University of Alberta Email: 3. Date of data collection (single date, range, approximate date): July 2018- July 2021 4. Geographic location of data collection: Lake Superior, Ontario, Canada 5. Information about funding sources that supported the collection of the data: Natural Sciences and Engineering Research Council of Canada (NSERC) DATA & FILE OVERVIEW This dataset contains time series temperature data for 7 transects arranged west to east on Lake Superior's north shore. Due to file size, raw data is separated by Location. Mean daily temperature is provideded for all data in the file Hillm...

气候避难所(climate refugia)指在气候变化情境下预计可保持相对稳定的区域,可作为物种扩散的残留栖息地与踏脚石生境。作为全球表面积最大的淡水湖,苏必利尔湖(Lake Superior)是研究冷调节型本地避难所的模式研究系统:自冰期消融以来,其夏季凉爽的水温与波浪作用一直维持着适合北极-高山植物孤立种群的岸线生境。已知其可在岸线附近产生夏季降温效应,进而影响局地气候,但目前尚未对内陆温度变化梯度与降温空间格局进行量化分析。本研究针对苏必利尔湖北岸,阐述了3年观测期内的内陆降温梯度范围、温度缓冲程度与降温格局。具体而言,我们在苏必利尔湖北岸布设了7条样带,并在10米、100米、1千米、10千米及100千米等距离处部署了温度数据记录仪…… ### 基本信息 1. 数据集标题:苏必利尔湖北岸岸线及邻近内陆森林的夏季湖泊降温效应 2. 作者信息 A. 通讯作者联系方式 姓名:Ashley Hillman 所属机构:阿尔伯塔大学(University of Alberta) 电子邮箱: B. 首席研究员联系方式 姓名:Scott Nielsen 所属机构:阿尔伯塔大学 电子邮箱: 3. 数据采集时间:2018年7月—2021年7月 4. 数据采集地理区域:加拿大安大略省苏必利尔湖 5. 数据采集资助来源:加拿大自然科学与工程研究理事会(Natural Sciences and Engineering Research Council of Canada, NSERC) ### 数据与文件概述 本数据集包含苏必利尔湖北岸自西向东布设的7条样带的温度时间序列数据。受文件大小限制,原始数据按采集地点拆分。所有文件中的日均温数据均已整理至Hillm开头的文件中(原文未完整展示)
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2023-12-12
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