Changes in Lake Area in Response to Climatic Forcing in the Endorheic Hongjian Lake Basin, China
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[1] N. Verhoest,et al. GLEAM v3: satellite-based land evaporation and root-zone soil moisture , 2016 .
[2] A. Pettitt. A Non‐Parametric Approach to the Change‐Point Problem , 1979 .
[3] Ying Liu,et al. Locally adaptive unmixing method for lake-water area extraction based on MODIS 250 m bands , 2014, Int. J. Appl. Earth Obs. Geoinformation.
[4] Ian M. Mason,et al. A New Global Lakes Database for a Remote Sensing Program Studying Climatically Sensitive Large Lakes , 1995 .
[5] Safar Marofi,et al. Trend Analysis in Reference Evapotranspiration Using Mann-Kendall and Spearman’s Rho Tests in Arid Regions of Iran , 2011, Water Resources Management.
[6] C. Verpoorter,et al. A global inventory of lakes based on high‐resolution satellite imagery , 2014 .
[7] P. Berry,et al. Global inland water monitoring from multi‐mission altimetry , 2005 .
[8] P. Micklin,et al. The past, present, and future Aral Sea , 2010 .
[9] K. Liang. Spatio-Temporal Variations in Precipitation Extremes in the Endorheic Hongjian Lake Basin in the Ordos Plateau, China , 2019, Water.
[10] Yong Tian,et al. Hydrological Cycle in the Heihe River Basin and Its Implication for Water Resource Management in Endorheic Basins , 2018 .
[11] H. B. Mann. Nonparametric Tests Against Trend , 1945 .
[12] Christian Schwatke,et al. Inter-annual water storage changes in the Aral Sea from multi-mission satellite altimetry, optical remote sensing, and GRACE satellite gravimetry , 2012 .
[13] P. Sen. Estimates of the Regression Coefficient Based on Kendall's Tau , 1968 .
[14] Muhammad Dawood,et al. Spatio-statistical analysis of temperature fluctuation using Mann–Kendall and Sen’s slope approach , 2017, Climate Dynamics.
[15] P. Bai,et al. Variability of temperature extremes in the Yellow River basin during 1961-2011 , 2014 .
[16] M. Nijsse. Testing the significance of Kendall's τ and Spearman's r[s].. , 1988 .
[17] Jaap Schellekens,et al. MSWEP: 3-hourly 0.25° global gridded precipitation (1979–2015) by merging gauge, satellite, and reanalysis data , 2016 .
[18] K. Liang. Comparative investigation on the decreased runoff between the water source and destination regions in the middle route of China’s South-to-North Water Diversion Project , 2018, Stochastic Environmental Research and Risk Assessment.
[19] Fangfang Yao,et al. Recent global decline in endorheic basin water storages , 2018, Nature Geoscience.
[20] M. Gocić,et al. Analysis of changes in meteorological variables using Mann-Kendall and Sen's slope estimator statistical tests in Serbia , 2013 .
[21] Hanqiu Xu. Modification of normalised difference water index (NDWI) to enhance open water features in remotely sensed imagery , 2006 .
[22] J. H. Zar,et al. Significance Testing of the Spearman Rank Correlation Coefficient , 1972 .
[23] Shi-yin Liu,et al. Evaluation and comparison of CHIRPS and MSWEP daily-precipitation products in the Qinghai-Tibet Plateau during the period of 1981–2015 , 2019 .
[24] Xiaomang Liu,et al. Recent changes in pan‐evaporation dynamics in China , 2011 .
[25] F. Veroustraete,et al. Change in area of Ebinur Lake during the 1998–2005 period , 2007 .
[26] M. F. Hutchinson,et al. Interpolating Mean Rainfall Using Thin Plate Smoothing Splines , 1995, Int. J. Geogr. Inf. Sci..
[27] Xianfang Song,et al. Impacts of climate variability and human activity on streamflow decrease in a sediment concentrated region in the Middle Yellow River , 2013, Stochastic Environmental Research and Risk Assessment.
[28] Xiaomang Liu,et al. Intercomparison and evaluation of three global high-resolution evapotranspiration products across China , 2018, Journal of Hydrology.
[29] R. Stone. Saving Iran's great salt lake. , 2015, Science.
[30] D. Mcginnis,et al. Monitoring Africa's Lake Chad basin with LANDSAT and NOAA satellite data , 1985 .
[31] Hongjie Xie,et al. Lake volume and groundwater storage variations in Tibetan Plateau's endorheic basin , 2017 .
[32] Sheng Liu,et al. The Yellow River basin becomes wetter or drier? The case as indicated by mean precipitation and extremes during 1961–2012 , 2015, Theoretical and Applied Climatology.
[33] Hui Fang,et al. Changes in the area of inland lakes in arid regions of central Asia during the past 30 years , 2011, Environmental monitoring and assessment.
[34] C. Spearman. The proof and measurement of association between two things. By C. Spearman, 1904. , 1987, The American journal of psychology.
[35] T. Holmes,et al. Global land-surface evaporation estimated from satellite-based observations , 2010 .
[36] Kang Liang,et al. Application of Landsat Imagery to Investigate Lake Area Variations and Relict Gull Habitat in Hongjian Lake, Ordos Plateau, China , 2017, Remote. Sens..
[37] Peng Bai,et al. Evaluation of Five Satellite-Based Precipitation Products in Two Gauge-Scarce Basins on the Tibetan Plateau , 2018, Remote. Sens..
[38] Shen Fang,et al. Remote Sensing Investigation and Survey of Qinghai Lake in the Past 25 Years , 2003 .
[39] Sarah E. Null,et al. Decline of the world's saline lakes , 2017 .
[40] D. Lettenmaier,et al. Measuring surface water from space , 2004 .
[41] Stephanie C. J. Palmer,et al. Remote sensing of inland waters: Challenges, progress and future directions , 2015 .
[42] D. Lettenmaier,et al. On the causes of the shrinking of Lake Chad , 2010 .
[43] S. K. McFeeters. The use of the Normalized Difference Water Index (NDWI) in the delineation of open water features , 1996 .
[44] Y. Pokhrel,et al. Climate and anthropogenic contributions to the desiccation of the second largest saline lake in the twentieth century , 2018 .
[45] Pierre Grussenmeyer,et al. Urban surface water body detection with suppressed built-up noise based on water indices from Sentinel-2 MSI imagery , 2018, Remote Sensing of Environment.
[46] Huilin Gao. Satellite remote sensing of large lakes and reservoirs: from elevation and area to storage , 2015 .
[47] S. Molander,et al. Life cycle assessment of wastewater systems : Influence of system boundaries and scale on calculated environmental loads , 2000 .
[48] B. Tapley,et al. Long‐term Caspian Sea level change , 2017 .
[49] Lindsay C. Stringer,et al. Lake drying and livelihood dynamics in Lake Chad: Unravelling the mechanisms, contexts and responses , 2016, Ambio.
[50] P. Döll,et al. Development and validation of a global database of lakes, reservoirs and wetlands , 2004 .
[51] K. Liang,et al. Dynamics and driving forces of Bojiang Lake area in Erdos Larus Relictus National Nature Reserve, China , 2017 .
[52] Kaishan Song,et al. China's wetlands loss to urban expansion , 2018, Land Degradation & Development.
[53] Kang Liang,et al. Quantifying Streamflow Variations in Ungauged Lake Basins by Integrating Remote Sensing and Water Balance Modelling: A Case Study of the Erdos Larus relictus National Nature Reserve, China , 2017, Remote. Sens..
[54] Ma Chao,et al. Water quality variation of Lake Hongjiannao and its driving force analysis from 1973 to 2013 , 2016 .
[55] A. Verhoef,et al. Essentials of Endorheic Basins and Lakes: A Review in the Context of Current and Future Water Resource Management and Mitigation Activities in Central Asia , 2017 .
[56] John P. Smol,et al. Lakes and reservoirs as sentinels, integrators, and regulators of climate change , 2009 .
[57] Xiaode Zhou,et al. Investigation of the dramatic changes in lake level of the Bosten Lake in northwestern China , 2014, Theoretical and Applied Climatology.