
呂少寧
Dr.Dr.(Drs)
lvshaoning@fudan.edu.cn
+86(0)21 31248810
研究興趣
數據同化、微波遙感和陸面模式模擬🧱、農業氣象
教育背景
2012.11-2019.4: 荷蘭特文特大學博士研究生,取得博士學位;
2008.9-2014.11: 中國科學院寒區旱區環境與工程研究所博士研究生(碩博連讀),取得理學博士學位;
2004.9-2008.6: 南京信息工程大學本科,取得理學學士學位🚴🏻♀️。
研究經歷
2020.12-今🧖🏻♂️:沐鸣2;
2018.1-2020.12: 波恩大學氣象研究所博士後;
2014.12-2019.1: 中國科學院寒區旱區環境與工程研究所博士後➞。
承擔課題
A、蘇州復曄科技有限公司委托橫向課題,合同編號23415,新型L波段被動微波輻射計數據處理和算法開發🚀, 2023/07-2024/12👨🏻🚒,10萬元,在研,主持人🤾🏿🪣;
B、Nordic Centre Planning Grant Seed funding for Sino-Nordic research collaboration: Microwave remote sensing monitoring of summertime sea ice change and the impact from high-latitude synoptic weather systems, 2023/2-2024/3, 10,000 EUR,結題😹,中方主持人🚵🏻♀️;
C✤、The Fudan-European Centre for China Studies (FECCS, hosted by the Department of Culture Studies and Oriental Languages(IKOS), University of Oslo (UiO)): the FECCS Small Grants,2023/1-2023/12🔦,35,000 NOK,結題🧑🏻🦯,主持人;
D🍇🦟、科技部國家重點研發計劃,熱帶西太平洋海-氣界面過程精細化協同觀測與數據融合(2022YFF0801404)之第四課題多尺度數值模擬和資料同化融合,2022/12-2027/11,36萬元🤹♂️,在研🪣,參加;
E、迪銳天成信息技術(北京)有限公司委托橫向課題,合同編號KJXM-B03·2022-Y-02-0052,呼倫貝爾野外微波遙感陸面參數綜合監測, 2022/03-2022/10,15萬元,結題🙍♀️,主持人;
F🕵🏻、溫州贏樂控股集團有限公司委托橫向課題,合同編號21899🥂,農田水利管理及病蟲害防治微波遙感綜合監測🙆🏿♀️, 2022/01-2023/12,10萬元🍴,結題,主持人✫;
G、上海市科委自然科學計劃項目♉️,21ZR1405500,微波遙感土壤濕度技術在上海地區精準農業監測與保障中的理論方法研究🦹🏼♀️,2021/07-2024/6,20萬元🔀,結題🤑,主持人👩🏻🦯➡️;
H✌🏽、國家自然科學基金面上項目,42075150👨🏼🌾,同化衛星L波段亮度溫度對模擬青藏高原大氣環流的影響研究🥦,2021/01-2024/12💆🏽♂️⏬,58萬元,在研,主持人;
I👩🏽💻🎄、國家自然科學基金面上項目✅,41575013🌔🔑,基於土壤有效溫度-發射率耦合機製的SMAP衛星土壤濕度反演模型研究🟧,2016/01-2019/12,65萬元,結題,主要完成人👳♀️👩👩👦。
教學經歷
本科生選修課《大氣遙感(地學反演導論)》主講人(50%工作量);研究生選修課《陸面過程與天氣氣候》主講人(50%工作量)。
學術兼職
《高原氣象》青年編輯委員會編委💒。
獲獎情況
A🎄🧔🏻、2023年11月獲得蘇州高新區科技創新創業領軍人才計劃區領軍人才稱號;
B🦹🏼、2021年12月獲得上海市組織部資助的上海市領軍人才(海外)青年項目👨🏻🏫;
C、2014 年 12 月獲得研究生國家獎學金🚣🏻♀️🌱。
發表論文
Shaoning Lv*, Derek Houtz, Shiyuan Li, Yin Hu, Jing Zhang, Dongli Wu, Lei Jin, Jun Wen. 2024. Rapid Retrieval of Soil Moisture Using a Novel Portable L-Band Radiometer in the Hulunbeier Prairie, China. GIScience & Remote Sensing, 2024, DOI - 10.1080/15481603.2024.2424337.
Yaoming Ma*, Zhongbo Su*, Lei Zhong, Yijian Zeng, Xuelong Chen, Cunbo Han, Binbin Wang, Zhipeng Xie, Weiyao Ma, Longtengfei Ma, Qianqian Han, Ruodan Zhuang, Lijie Zhang, Shaoning Lv, Lianyu Yu, Jan Hofste, Hong Zhao, Jun Wen & Weiqiang Ma. 2024.Analysis of land-atmosphere interactions and their influence on the energy and water cycle over the Tibetan Plateau, Geo-spatial Information Science, 2024, Vol. 27 (3), pp 902-921, DOI: 10.1080/10095020.2024.2372504.
Shaoning Lv, Tianjie Zhao*, Yin Hu, Jun Wen. 2024. Empirical Validation of Soil Temperature Sensing Depth Derived from the Tau-z Model Utilizing Data from the Soil Moisture Experiment in the Luan River (SMELR). IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, pp. 1-15, 2024, DOI: 10.1109/JSTARS.2024.3434414.
李世園🧜🏿♀️,呂少寧*,文軍. 2024. 青藏高原低渦的活動特征和敏感區識別及其與陸面的關聯分析研究[J]. 高原氣象, 43(5). doi: 10.7522/j.issn.1000-0534.2023.00090.
Shaoning Lv, Lianyu Yu, Yijian Zeng, Jun Wen*, Clemens Simmer, Zhongbo Su. 2023. Inference of Soil Freezing Front Depth during the Freezing Period from the L-Band Passive Microwave Brightness Temperature. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, pp. 1-15, 2023, doi: 10.1109/JSTARS.2023.3241876.
Shaoning Lv, Clemens Simmer, Yijian Zeng, Jun Wen*, Zhongbo Su. 2022. Impact of profile-averaged soil ice fraction on passive microwave brightness temperature Diurnal Amplitude Variations (DAV) at L-band. Cold Region Science and Technology, 205, 103674, doi:https://doi.org/10.1016/j.coldregions.2022.103674.
Shaoning Lv, Jun Wen*, Clemens Simmer, Yijian Zeng, Yuanyuan Guo, Zhongbo Su,. 2022. A Novel Freeze-Thaw State Detection Algorithm Based on Passive L-Band Microwave Remote Sensing, Remote Sensing, 14, 4747. doi: 10.3390/rs14194747
Shaoning Lv*, Clemens Simmer, Yijian Zeng, Jun Wen, Zhongbo Su,. 2022. The simulation of L-band Microwave Emission of Frozen Soil during the Thawing Period with the Community Microwave Emission Model (CMEM), Journal of Remote Sensing, , vol. 2022, 2022, doi: doi:10.34133/2022/9754341.
Shaoning Lv*, Bernd Schalge, Pablo Saavedra Garfias, Clemens Simmer. 2020. Required sampling density of ground-based soil moisture and brightness temperature observations for calibration and validation of L-band satellite observations based on a virtual reality, Hydrology and Earth System Sciences., 24, 1957–1973, https://doi.org/10.5194/hess-24-1957-2020, 2020
Zhongbo Su, Jun Wen.,Yijian Zeng, Hong Zhao, Shaoning Lv, van der Velde, R., Donghai Zheng, Xin Wang, Zuoliang Wang, Schwank, M., Kerr, Y., Yueh, S., Colliander, A., Qian, H., Drusch, M., & Mecklenburg, S. (2020). Multiyear in-situ L-band microwave radiometry of land surface processes on the Tibetan Plateau. Scientific Data, 7, 317
Shaoning Lv, Yijian Zeng, Jun Wen*, Zhongbo Su. 2019. A closed-form expression on optical depth and soil effective temperature. IEEE Transactions on Geoscience and Remote Sensing; doi: 10.1109/TGRS.2019.2893687
Shaoning Lv*, Yijian Zeng, Jun Wen, Hong Zhao, Zhongbo Su.2018. Estimation of penetration depth from soil effective temperature in microwave radiometry. Remote Sensing, 10, 519; doi:10.3390/rs10040519.
Shaoning Lv*, Yijian Zeng, Jun Wen, Zhongbo Su. 2016. A reappraisal of global soil effective temperature schemes. Remote Sensing of Environment. 183: p. 144-153.
Shaoning Lv*, Yijian Zeng, Jun Wen, Donghai Zheng, Zhongbo Su. 2016. Determination of the Optimal Mounting Depth for Calculating Effective Soil Temperature at L-Band: Maqu Case. Remote Sensing. 8(6): p. 476.
Shaoning Lv*, Jun Wen, Yijian Zeng, Hui Tian, Zhongbo Su. 2014. An improved two-layer algorithm for estimating effective soil temperature in microwave radiometry using in situ temperature and soil moisture measurements. Remote Sensing of Environment, DOI: 10.1016/j.rse.2014.07.007
呂少寧*,文軍🈴,張宇,王少影💆🏽,張堂堂❤️,田輝,劉蓉. 不同平均時間對LOPEX10資料渦動相關湍流通量計算結果影響的探討[J]. 高原氣象. Shaoning Lv, Jun Wen, Zhang Yu, Wang Shaoying, Zhang Tangtang. 2012. Analysis on Averaging Time of Flux Calculation Measured by Eddy-covariance System. Plateau Meteorology, 31 (6), 1-9. (In Chinese)
Wen Jun*, Lan Yongchao, Su Zhongbo, Tian Hui, Shi Xiaokang, Zhang Yu, Wang Xin, Liu Rong, Zhang Tangtang, Kang Yue1, Lü Shaoning, Zhang Jinghui. 2011. Advances in Observation and Modeling of Land Surface Processes Over the Source Region of the Yellow River. Advances in Earth Science, 26 (6), 575-585. (In Chinese)
呂少寧🌠,文軍*,劉蓉. 中國大陸地區不同降水資料的適用性及其應用潛力[J]. 高原氣象, 2011, 30(3): 628-640. Shaoning Lv, Jun Wen, Rong Liu. 2011. The Applicability and Potential of the Different Re-analysis Precipitation Data in Mainland China. Plateau Meteorology, 30 (3), 628-640. (In Chinese)
呂少寧,文軍*,康悅. 黃河源區瑪曲草原草場退化原因調查分析[J]. 生態經濟, 2011(2): 166-170. Shaoning Lv, Jun Wen, Yue Kang. 2011. A Survey Study on Grassland Degradation over the Source Water Region of the Yellow River. Ecological Economy, 235, 166-170. (In Chinese)
Tian Hui, Wen Jun, Shi Xiao-kang, Wang Xin, Liu Rong, Zhang Jing-hui1, Lü Shaoning. 2011. Estimation of Soil Moisture in Summer by Active Microwave Remote Sensing for the Maqu Area at the Upper Reaches of the Yellow River. Advances in Water Science, 22 (1), 59-66. (In Chinese)
呂少寧,李棟梁,文軍*,王磊,劉蓉,王欣.全球變暖背景下青藏高原氣溫周期變化與突變分析[J].高原氣象,2010,29(6):1378-1385. Shaoning Lv, Dongliang Li, Jun Wen, Lei Wang, Rong Liu, Xin Wang. 2010. Analysis on Periodic Variations and Abrupt Change of Air Temperature over Qinghai-Xizang Plateau under Global Warming. Plateau Meteorology, 29(6), 1378-1385. (In Chinese)
R. Liu, J. Wen, X. Wang, L. Wang, H. Tian, T. T. Zhang, X. K. Shi, J. H. Zhang, and SH. N. Lv, 2011. Actual daily evapotranspiration estimated from MERIS and AATSR data over the Chinese Loess Plateau. Hydrology and Earth System Sciences, 14, 47-58.
出版書籍
Shaoning Lv. Soil effective temperature and its application in passive remote sensing of soil moisture at L-band, 347, ITC Dissertation, University of Twente, Faculty of Geo-Information Science and Earth Observation (ITC), 2019. ISBN: 978-90-365-4749-9
專利
呂少寧,沐鸣2平台. 一種L波段微波遙感輻射計: CN202310890132.5[P]. 2023-12-08.
呂少寧,沐鸣2平台. 一種獨特的雙貼片陣列天線: CN202321896618.1 [P]. 2023-12-08.
呂少寧,沐鸣2平台. 一種L 波段輻射計帶通濾波器: CN202321896619.6 [P]. 2023-12-08.
呂少寧,沐鸣2平台. 基於微波遙感的農田灌溉頻率確定方法及裝置、計算設備: 2023114875120 [P]. 2023-12-08.
呂少寧🏞,胡尹,沐鸣2平台. 一種日變化信號年周期特征識別的土壤凍融狀態確定方法: 2023114965292 [P]. 2023-12-08.
#以上信息由本人提供👨🏿🦳,更新時間🚵♂️:2024/10/30