1 |
Zhang T, Barry R G, Knowles K, et al. Statistics and characteristics of permafrost and ground-ice distribution in the Northern Hemisphere[J]. Polar Geography, 2008, 31(1/2): 47-68.
|
2 |
Kimball J S, McDonald K C, Keyser A R, et al. Application of the NASA Scatterometer (NSCAT) for determining the daily frozen and nonfrozen landscape of Alaska[J]. Remote Sensing of Environment, 2001, 75(1): 113-126.
|
3 |
Lawrence D M, Slater A G. Incorporating organic soil into a global climate model[J]. Climate Dynamics, 2008, 30(2/3): 145-160.
|
4 |
Wang Xuejia, Yang Meixue, Wan Guoning. Processes of soil thawing-freezing and features of ground temperature and moisture at D105 on the northern Tibetan Plateau[J]. Journal of Glaciology and Geocryology, 2012, 34(1): 56-63.
|
|
王学佳, 杨梅学, 万国宁. 藏北高原D105点土壤冻融状况与温湿特征分析[J]. 冰川冻土, 2012, 34(1): 56-63.
|
5 |
Yang Meixue, Yao Tandong, Nozomu H, et al. Diurnal freeze-thaw cycles of topsoil in the Tibetan Plateau[J]. Chinese Science Bulletin, 2006, 51(16): 1975-1976.
|
|
杨梅学, 姚檀栋, Nozomu H, 等. 青藏高原表层土壤的日冻融循环[J]. 科学通报, 2006, 51(16): 1974-1976.
|
6 |
Jin Rui, Li Xin, Che Tao. A decision tree algorithm for surface freeze/thaw classification using SSM/I[J]. Journal of Remote Sensing, 2009, 13(1): 152-161.
|
|
晋锐, 李新, 车涛. SSM/I监测地表冻融状态的决策树算法[J]. 遥感学报, 2009, 13(1): 152-161.
|
7 |
Che Tao. Impacts on passive microwave remote sensing of snow from heterogeneities of snow properties[J]. Remote Sensing Technology and Application, 2013, 38(1): 27-33.
|
|
车涛. 积雪属性非均匀性对被动微波遥感积雪的影响[J]. 遥感技术与应用, 2013, 38(1): 27-33.
|
8 |
Zhao Tianjie, Zhang Lixin, Jiang Lingmei, et al. Joint inversion of soil moisture using active and passive microwave data[J]. Advances in Earth Science, 2009, 24(7): 769-775.
|
|
赵天杰, 张立新, 蒋玲梅, 等. 利用主被动微波数据联合反演土壤水分[J]. 地球科学进展, 2009, 24(7): 769-775.
|
9 |
Zheng Donghai, Li Xin, Wang Xin, et al. Sampling depth of L-band radiometer measurements of soil moisture and freeze-thaw dynamics on the Tibetan Plateau[J]. Remote Sensing of Environment, 2019, 226: 16-25.
|
10 |
Jackson T J, Schmugge T J. Passive microwave remote sensing system for soil moisture: some supporting research[J]. IEEE Transactions on Geoscience and Remote Sensing, 1989, 27(2): 225-235.
|
11 |
Wang L, Wolken G J, Sharp M J, et al. Integrated pan-Arctic melt onset detection from satellite active and passive microwave measurements, 2000-2009[J/OL]. Journal of Geophysical Research: Atmospheres, 2011, 116(D22) [2021-01-25]. .
|
12 |
Kim Y, Kimball J S, Zhang K, et al. Satellite detection of increasing Northern Hemisphere non-frozen seasons from 1979 to 2008: implications for regional vegetation growth[J]. Remote Sensing of Environment, 2012, 121: 472-487.
|
13 |
Kerr Y H, Waldteufel P, Wigneron J P, et al. Soil moisture retrieval from space: the soil moisture and ocean salinity (SMOS) mission[J]. IEEE Transactions on Geoscience and Remote Sensing, 2001, 39(8): 1729-1735.
|
14 |
Roy A, Royer A, Derksen C, et al. Evaluation of spaceborne L-band radiometer measurements for terrestrial freeze/thaw retrievals in Canada[J]. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 2015, 8(9): 4442-4459.
|
15 |
Panciera R, Walker J P, Kalma J D, et al. Evaluation of the SMOS L-MEB passive microwave soil moisture retrieval algorithm[J]. Remote Sensing of Environment, 2009, 113(2): 435-444.
|
16 |
Mo T, Choudhury B J, Schmugge T J, et al. A model for microwave emission from vegetation-covered fields[J]. Journal of Geophysical Research: Oceans, 1982, 87(C13): 11229-11237.
|
17 |
Zhang Lixin, Zhao Shaojie, Jiang Lingmei. The time series of microwave radiation from representative land surface in upper reach of the Heihe River during the alternation of freezing and thawing[J]. Journal of Glaciology and Geocryology, 2009, 31(2): 198-206.
|
|
张立新, 赵少杰, 蒋玲梅. 冻融交替季节黑河上游代表性地物类型的微波辐射时序特征[J]. 冰川冻土, 2009, 31(2): 198-206.
|
18 |
Schwank M, Wiesmann A, Werner C, et al. ELBARA II, an L-band radiometer system for soil moisture research[J]. Sensors, 2010, 10(1): 584-612.
|
19 |
Rautiainen K. L-band radiometer observations of soil processes in boreal and subarctic environments[J]. IEEE Transactions on Geoscience and Remote Sensing, 2012, 50(5): 1483-1497.
|
20 |
Chen Jinlei, Wen Jun, Liu Rong, et al. Variation characteristics of soil temperature & moisture and air parameters in the source region of the Yellow River[J]. Journal of Applied Meteorological Science, 2017, 28(1): 98-108.
|
|
陈金雷, 文军, 刘蓉, 等. 黄河源区土壤温湿和大气参量变化特征[J]. 应用气象学报, 2017, 28(1): 98-108.
|
21 |
European Space Agency. SMOS gets help from Tibet[EB/OL]. [2020-04-22]. .
|
22 |
Wang Zuoliang, Wen Jun, Liu Rong, et al. Evaluation of the applicability of different dielectric models for soil moisture retrieval based on the ground-based radiometer measurements[J]. Remote Sensing Technology and Application, 2020, 35(1): 97-110.
|
|
王作亮, 文军, 刘蓉, 等. 基于地基微波辐射计数据评估不同土壤介电模型反演土壤湿度的适用性[J]. 遥感技术与应用, 2020, 35(1): 97-110.
|
23 |
Chen Jinlei, Wen Jun, Tian Hui, et al. A study of soil thermal and hydraulic properties and parameterizations for CLM in the SRYR[J]. Journal of Geophysical Research: Atmospheres, 2018, 123(16): 8487-8499.
|
24 |
Falge E, Baldocchi D, Olson R, et al. Gap filling strategies for defensible annual sums of net ecosystem exchange[J]. Agricultural and Forest Meteorology, 2001, 107: 43-69.
|
25 |
Ge Jun, Yu Ye, Li Zhenchao, et al. Impacts of freeze/thaw processes on land surface energy fluxes in the permafrost region of Tibet Plateau[J]. Plateau Meteorology, 2016, 35(3): 608-620.
|
|
葛骏, 余晔, 李振朝, 等. 青藏高原多年冻土区土壤冻融过程对地表能量通量的影响研究[J]. 高原气象, 2016, 35(3): 608-620.
|
26 |
Ran Hongwu, Fan Jihui, Huang Jing. Characteristics of water and heat change during the freezing-thawing process of soil profiles in the alpine cold steppe, northern Tibetan Plateau[J]. Pratacultural Science, 2019, 36(4): 980-990.
|
|
冉洪伍, 范继辉, 黄菁. 藏北高寒草地土壤冻融过程水热变化特征[J]. 草业科学, 2019, 36(4): 980-990.
|
27 |
Miao Chunyan, Chen Junfeng, Zheng Xiuqing. Relationship between air temperatures and soil freezing-thawing process[J]. Journal of Taiyuan University of Technology, 2018, 49(3): 412-417.
|
|
苗春燕, 陈军锋, 郑秀清. 冻融期气温与土壤冻融过程的关系研究[J]. 太原理工大学学报, 2018, 49(3): 412-417.
|
28 |
Rautiainen K, Lemmetyinen J, Schwank M, et al. Detection of soil freezing from L-band passive microwave observations[J]. Remote Sensing of Environment, 2014, 147(9): 206-218.
|
29 |
Rautiainen K, Parkkinen T, Lemmetyinen J, et al. SMOS prototype algorithm for detecting autumn soil freezing[J]. Remote Sensing of Environment, 2016, 180: 346-360.
|
30 |
Li Danhua, Wen Lijuan, Long Xiao, et al. Energy balance during three snow cover processes at Maqu in the headwaters of the Yellow River[J]. Arid Zone Research, 2018, 35(6): 1327-1335.
|
|
李丹华, 文莉娟, 隆霄, 等. 黄河源区玛曲3次积雪过程能量平衡特征[J]. 干旱区研究, 2018, 35(6): 1327-1335.
|