祁连山综合观测网:青海湖流域地表过程综合观测网(青海湖湖面气象要素梯度观测系统-2019)

Qilian Mountains integrated observatory network: Dataset of Qinghai Lake integrated observatory network (an observation system of Meteorological elements gradient of Yulei station on Qinghai lake, 2019)


该数据集包含了2018年10月23日至2019年12月31日青海湖流域水文气象观测网青海湖鱼雷发射基地站气象要素梯度观测系统数据。站点位于青海省青海湖二郎剑景区鱼雷发射基地,下垫面是青海湖水面。观测点经纬度为:东经 100° 29' 59.726''E,北纬 36° 35' 27.337''N,海拔3209m。风速/风向架设在距湖面14m处,共1层,朝向正北;空气温度、相对湿度传感器分别架设在距湖面12m、12.5m处,共2层,朝向正北;翻斗式雨量计安装在距湖面10m处;四分量辐射仪安装在距湖面10m处,朝向正南;一个红外温度计安装在距湖面10m处,朝向正南,探头朝向是垂直向下;湖水温度探头设在水下0.2, 0.5, 1.0, 2.0, and 3.0 m处;光合有效辐射仪安装在距湖面10m处,探头朝向是垂直向下,朝向正南。

观测项目有:风速(WS_14m)(单位:米/秒)、风向(WD_14m)(单位:度)、空气温湿度(Ta_12m、Ta_12.5m和RH_12m、RH_12.5m)(单位:摄氏度、百分比)、降水量(Rain)(单位:毫米)、湖表辐射温度(IRT_1)(单位:摄氏度)、光合有效辐射(PAR)(单位:微摩尔/平方米秒) 、四分量辐射(DR、UR、DLR_Cor、ULR_Cor、Rn)(单位:瓦/平方米)、湖水温度(Tw_20cm、Tw_50cm、Tw_100cm、Tw_200cm、Tw_300cm)(单位:摄氏度)。

观测数据的处理与质量控制:(1)确保每天144个数据(每10min),若出现数据的缺失,则由-6999标示;2018.1.1-10.12由于由于采集器的问题,除四分量外的气象数据均无记录;(2)剔除有重复记录的时刻;(3)删除了明显超出物理意义或超出仪器量程的数据;(4)数据中以红字标示的部分为有疑问的数据;(5)日期和时间的格式统一,并且日期、时间在同一列。如,时间为:2018-1-1 10:30。


数据文件命名方式和使用方法

年份+**观测网+站点名称+AWS


本数据要求的引用方式 查看数据引用帮助 数据引用必读
数据的引用

李小雁. (2020). 祁连山综合观测网:青海湖流域地表过程综合观测网(青海湖湖面气象要素梯度观测系统-2019). 时空三极环境大数据平台, DOI: 10.11888/Meteoro.tpdc.270732. CSTR: 18406.11.Meteoro.tpdc.270732.
[Li, X. (2020). Qilian Mountains integrated observatory network: Dataset of Qinghai Lake integrated observatory network (an observation system of Meteorological elements gradient of Yulei station on Qinghai lake, 2019). A Big Earth Data Platform for Three Poles, DOI: 10.11888/Meteoro.tpdc.270732. CSTR: 18406.11.Meteoro.tpdc.270732. ] (下载引用: RIS格式 | RIS英文格式 | Bibtex格式 | Bibtex英文格式 )

文章的引用

1. Li, X.Y., Yang, X.F., Ma, Y.J., Hu, G.R., Hu, X., Wu, X.C., Wang, P., Huang, Y.M., Cui, B.L., & Wei, J.Q. (2018). Qinghai Lake Basin Critical Zone Observatory on the Qinghai-Tibet Plateau. Vadose Zone Journal, 17(1).( 查看 | Bibtex格式)

2. Li, X.Y., Ma, Y.J., Huang, Y.M., Hu, X., Wu, X.C., Wang, P., Li, G.Y., Zhang, S.Y., Wu, H.W., Jiang, Z.Y., Cui, B.L., & Liu, L. (2016). Evaporation and surface energy budget over the largest high-altitude saline lake on the Qinghai-Tibet Plateau. Journal of Geophysical Research: Atmospheres, 121(18), 10470-10485.( 查看 | Bibtex格式)

使用本数据时必须引用“文章的引用”中列出的文献,并进行数据的引用


参考文献

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12.Zhang, Q., Sun, R., Jiang, G.Q., Xu, Z.W., & Liu, S.M. (2016). Carbon and energy flux from a Phragmites australis wetland in Zhangye oasis-desert area, China. Agricultural and Forest Meteorology, 230-231, 45-57. (查看 )

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15.Song, L.S., Liu, S.M., Zhang, X., Zhou, J., & Li, M.S. (2015). Estimating and Validating Soil Evaporation and Crop Transpiration During the HiWATER-MUSOEXE. IEEE Geoscience and Remote Sensing Letters, 12(2), 334-338. (查看 | 下载 )

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资助项目

泛第三极环境变化与绿色丝绸之路建设专项(XDA20000000) (项目编号:XDA20000000) Pan-Third Pole Environment Study for a Green Silk Road-A CAS Strategic Priority A Program

数据使用声明

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  • 数据时间范围: 2018-11-13 至 2020-01-21
  • 元数据更新时间: 2021-04-19
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