Z.-L. Li, H. Wu, N. Wang, S. Qiu, J. A. Sobrino, Z. Wan, B.-H. Tang, and G. J. Yan, “Land surface emissivity retrieval from satellite data,” Int. J. Remote Sens. 34(9–10), 3084–3127 (2013).
[Crossref]
Z.-L. Li, B.-H. Tang, H. Wu, H. Z. Ren, G. J. Yan, Z. M. Wan, I. F. Trigo, and J. A. Sobrino, “Satellite-derived land surface temperature: Current status and perspectives,” Remote Sens. Environ. 131, 14–37 (2013).
[Crossref]
C. Gao, X. Jiang, H. Wu, B.-H. Tang, Z. Li, and Z.-L. Li, “Comparison of land surface temperatures from MSG-2/SEVIRI and Terra/MODIS,” Int. J. Remote Sens. 6(1), 063606 (2012).
J. Cristóbal, J. C. Jiménez-Muñoz, J. A. Sobrino, M. Ninyerola, and X. Pons, “Improvements in land surface temperature retrieval from the Landsat series thermal band using water vapor and air temperature,” J. Geophys. Res. 114(D8), D08103 (2009).
[Crossref]
Z.-L. Li, R. L. Tang, Z. M. Wan, Y.-Y. Bi, C. H. Zhou, B.-H. Tang, G. J. Yan, and X. Y. Zhang, “A review of current methodologies for regional evapotranspiration estimation from remotely sensed data,” Sensors (Basel) 9(5), 3801–3853 (2009).
[Crossref]
[PubMed]
B.-H. Tang and Z.-L. Li, “Estimation of instantaneous net surface longwave radiation from MODIS cloud-free data,” Remote Sens. Environ. 112(9), 3482–3492 (2008).
[Crossref]
G. M. Jiang and Z.-L. Li, “Split-window algorithm for land surface temperature estimation from MSGI-SEVIRI data,” Int. J. Remote Sens. 29(20), 6067–6074 (2008).
[Crossref]
B.-H. Tang, Y. Y. Bi, Z.-L. Li, and J. Xia, “Generalized Split-Window algorithm for estimate of land surface temperature from Chinese geostationary FengYun meteorological satellite (FY-2C) data,” Sensors 8(2), 933–951 (2008).
[Crossref]
J. A. Sobrino and M. Romaguera, “Land surface temperature retrieval from MSG1-SEVIRI data,” Remote Sens. Environ. 92(2), 247–254 (2004).
[Crossref]
Z.-L. Li, L. Jia, Z. B. Su, Z. M. Wan, and R. Zhang, “A new approach for retrieving precipitable water from ATSR2 split-window channel data over land area,” Int. J. Remote Sens. 24(24), 5095–5117 (2003).
[Crossref]
T. Schmugge, A. French, J. C. Ritchie, A. Rango, and H. Pelgrum, “Temperature and emissivity separation from multispectral thermal infrared observations,” Remote Sens. Environ. 79(2–3), 189–198 (2002).
[Crossref]
F. M. Göttsche and F. S. Olesen, “Modeling of diurnal cycles of brightness temperature extracted from METEOSAT data,” Remote Sens. Environ. 76(3), 337–348 (2001).
[Crossref]
A. Gillespie, S. Rokugawa, T. Matsunaga, T. Matsunaga, and J. S. Cothern, “A temperature and emissivity separation algorithm for Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images,” IEEE Trans. Geosci. Rem. Sens. 36(4), 1113–1126 (1998).
[Crossref]
J. A. Sobrino, Z.-L. Li, M. P. Stoll, and F. Becker, “Multi-channel and multi-angle algorithms for estimating sea and land surface temperature with ATSR data,” Int. J. Remote Sens. 17(11), 2089–2114 (1996).
[Crossref]
Z. Wan and J. Dozier, “A Generalized split-window algorithm for retrieving land-surface temperature from space,” IEEE Trans. Geosci. Rem. Sens. 34(4), 892–905 (1996).
[Crossref]
J. C. Price, “The potential of remotely sensed thermal infrared data to infer surface soil moisture and evaporation,” Water Resour. 16, 787–795 (1990).
F. Becker and Z.-L. Li, “Toward a local split window method over land surface,” Int. J. Remote Sens. 11(3), 369–393 (1990).
[Crossref]
L. M. McMillin, “Estimation of sea surface temperature from two infrared window measurements with different absorption,” J. Geophys. Res. 80(36), 5113–5117 (1975).
[Crossref]
J. A. Sobrino, Z.-L. Li, M. P. Stoll, and F. Becker, “Multi-channel and multi-angle algorithms for estimating sea and land surface temperature with ATSR data,” Int. J. Remote Sens. 17(11), 2089–2114 (1996).
[Crossref]
F. Becker and Z.-L. Li, “Toward a local split window method over land surface,” Int. J. Remote Sens. 11(3), 369–393 (1990).
[Crossref]
B.-H. Tang, Y. Y. Bi, Z.-L. Li, and J. Xia, “Generalized Split-Window algorithm for estimate of land surface temperature from Chinese geostationary FengYun meteorological satellite (FY-2C) data,” Sensors 8(2), 933–951 (2008).
[Crossref]
Z.-L. Li, R. L. Tang, Z. M. Wan, Y.-Y. Bi, C. H. Zhou, B.-H. Tang, G. J. Yan, and X. Y. Zhang, “A review of current methodologies for regional evapotranspiration estimation from remotely sensed data,” Sensors (Basel) 9(5), 3801–3853 (2009).
[Crossref]
[PubMed]
A. Gillespie, S. Rokugawa, T. Matsunaga, T. Matsunaga, and J. S. Cothern, “A temperature and emissivity separation algorithm for Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images,” IEEE Trans. Geosci. Rem. Sens. 36(4), 1113–1126 (1998).
[Crossref]
J. Cristóbal, J. C. Jiménez-Muñoz, J. A. Sobrino, M. Ninyerola, and X. Pons, “Improvements in land surface temperature retrieval from the Landsat series thermal band using water vapor and air temperature,” J. Geophys. Res. 114(D8), D08103 (2009).
[Crossref]
Z. Wan and J. Dozier, “A Generalized split-window algorithm for retrieving land-surface temperature from space,” IEEE Trans. Geosci. Rem. Sens. 34(4), 892–905 (1996).
[Crossref]
T. Schmugge, A. French, J. C. Ritchie, A. Rango, and H. Pelgrum, “Temperature and emissivity separation from multispectral thermal infrared observations,” Remote Sens. Environ. 79(2–3), 189–198 (2002).
[Crossref]
C. Gao, X. Jiang, H. Wu, B.-H. Tang, Z. Li, and Z.-L. Li, “Comparison of land surface temperatures from MSG-2/SEVIRI and Terra/MODIS,” Int. J. Remote Sens. 6(1), 063606 (2012).
A. Gillespie, S. Rokugawa, T. Matsunaga, T. Matsunaga, and J. S. Cothern, “A temperature and emissivity separation algorithm for Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images,” IEEE Trans. Geosci. Rem. Sens. 36(4), 1113–1126 (1998).
[Crossref]
F. M. Göttsche and F. S. Olesen, “Modeling of diurnal cycles of brightness temperature extracted from METEOSAT data,” Remote Sens. Environ. 76(3), 337–348 (2001).
[Crossref]
Z.-L. Li, L. Jia, Z. B. Su, Z. M. Wan, and R. Zhang, “A new approach for retrieving precipitable water from ATSR2 split-window channel data over land area,” Int. J. Remote Sens. 24(24), 5095–5117 (2003).
[Crossref]
G. M. Jiang and Z.-L. Li, “Split-window algorithm for land surface temperature estimation from MSGI-SEVIRI data,” Int. J. Remote Sens. 29(20), 6067–6074 (2008).
[Crossref]
C. Gao, X. Jiang, H. Wu, B.-H. Tang, Z. Li, and Z.-L. Li, “Comparison of land surface temperatures from MSG-2/SEVIRI and Terra/MODIS,” Int. J. Remote Sens. 6(1), 063606 (2012).
J. Cristóbal, J. C. Jiménez-Muñoz, J. A. Sobrino, M. Ninyerola, and X. Pons, “Improvements in land surface temperature retrieval from the Landsat series thermal band using water vapor and air temperature,” J. Geophys. Res. 114(D8), D08103 (2009).
[Crossref]
C. Gao, X. Jiang, H. Wu, B.-H. Tang, Z. Li, and Z.-L. Li, “Comparison of land surface temperatures from MSG-2/SEVIRI and Terra/MODIS,” Int. J. Remote Sens. 6(1), 063606 (2012).
Z.-L. Li, B.-H. Tang, H. Wu, H. Z. Ren, G. J. Yan, Z. M. Wan, I. F. Trigo, and J. A. Sobrino, “Satellite-derived land surface temperature: Current status and perspectives,” Remote Sens. Environ. 131, 14–37 (2013).
[Crossref]
Z.-L. Li, H. Wu, N. Wang, S. Qiu, J. A. Sobrino, Z. Wan, B.-H. Tang, and G. J. Yan, “Land surface emissivity retrieval from satellite data,” Int. J. Remote Sens. 34(9–10), 3084–3127 (2013).
[Crossref]
C. Gao, X. Jiang, H. Wu, B.-H. Tang, Z. Li, and Z.-L. Li, “Comparison of land surface temperatures from MSG-2/SEVIRI and Terra/MODIS,” Int. J. Remote Sens. 6(1), 063606 (2012).
Z.-L. Li, R. L. Tang, Z. M. Wan, Y.-Y. Bi, C. H. Zhou, B.-H. Tang, G. J. Yan, and X. Y. Zhang, “A review of current methodologies for regional evapotranspiration estimation from remotely sensed data,” Sensors (Basel) 9(5), 3801–3853 (2009).
[Crossref]
[PubMed]
B.-H. Tang and Z.-L. Li, “Estimation of instantaneous net surface longwave radiation from MODIS cloud-free data,” Remote Sens. Environ. 112(9), 3482–3492 (2008).
[Crossref]
B.-H. Tang, Y. Y. Bi, Z.-L. Li, and J. Xia, “Generalized Split-Window algorithm for estimate of land surface temperature from Chinese geostationary FengYun meteorological satellite (FY-2C) data,” Sensors 8(2), 933–951 (2008).
[Crossref]
G. M. Jiang and Z.-L. Li, “Split-window algorithm for land surface temperature estimation from MSGI-SEVIRI data,” Int. J. Remote Sens. 29(20), 6067–6074 (2008).
[Crossref]
Z.-L. Li, L. Jia, Z. B. Su, Z. M. Wan, and R. Zhang, “A new approach for retrieving precipitable water from ATSR2 split-window channel data over land area,” Int. J. Remote Sens. 24(24), 5095–5117 (2003).
[Crossref]
J. A. Sobrino, Z.-L. Li, M. P. Stoll, and F. Becker, “Multi-channel and multi-angle algorithms for estimating sea and land surface temperature with ATSR data,” Int. J. Remote Sens. 17(11), 2089–2114 (1996).
[Crossref]
F. Becker and Z.-L. Li, “Toward a local split window method over land surface,” Int. J. Remote Sens. 11(3), 369–393 (1990).
[Crossref]
A. Gillespie, S. Rokugawa, T. Matsunaga, T. Matsunaga, and J. S. Cothern, “A temperature and emissivity separation algorithm for Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images,” IEEE Trans. Geosci. Rem. Sens. 36(4), 1113–1126 (1998).
[Crossref]
A. Gillespie, S. Rokugawa, T. Matsunaga, T. Matsunaga, and J. S. Cothern, “A temperature and emissivity separation algorithm for Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images,” IEEE Trans. Geosci. Rem. Sens. 36(4), 1113–1126 (1998).
[Crossref]
L. M. McMillin, “Estimation of sea surface temperature from two infrared window measurements with different absorption,” J. Geophys. Res. 80(36), 5113–5117 (1975).
[Crossref]
J. Cristóbal, J. C. Jiménez-Muñoz, J. A. Sobrino, M. Ninyerola, and X. Pons, “Improvements in land surface temperature retrieval from the Landsat series thermal band using water vapor and air temperature,” J. Geophys. Res. 114(D8), D08103 (2009).
[Crossref]
F. M. Göttsche and F. S. Olesen, “Modeling of diurnal cycles of brightness temperature extracted from METEOSAT data,” Remote Sens. Environ. 76(3), 337–348 (2001).
[Crossref]
T. Schmugge, A. French, J. C. Ritchie, A. Rango, and H. Pelgrum, “Temperature and emissivity separation from multispectral thermal infrared observations,” Remote Sens. Environ. 79(2–3), 189–198 (2002).
[Crossref]
J. Cristóbal, J. C. Jiménez-Muñoz, J. A. Sobrino, M. Ninyerola, and X. Pons, “Improvements in land surface temperature retrieval from the Landsat series thermal band using water vapor and air temperature,” J. Geophys. Res. 114(D8), D08103 (2009).
[Crossref]
J. C. Price, “The potential of remotely sensed thermal infrared data to infer surface soil moisture and evaporation,” Water Resour. 16, 787–795 (1990).
Z.-L. Li, H. Wu, N. Wang, S. Qiu, J. A. Sobrino, Z. Wan, B.-H. Tang, and G. J. Yan, “Land surface emissivity retrieval from satellite data,” Int. J. Remote Sens. 34(9–10), 3084–3127 (2013).
[Crossref]
T. Schmugge, A. French, J. C. Ritchie, A. Rango, and H. Pelgrum, “Temperature and emissivity separation from multispectral thermal infrared observations,” Remote Sens. Environ. 79(2–3), 189–198 (2002).
[Crossref]
Z.-L. Li, B.-H. Tang, H. Wu, H. Z. Ren, G. J. Yan, Z. M. Wan, I. F. Trigo, and J. A. Sobrino, “Satellite-derived land surface temperature: Current status and perspectives,” Remote Sens. Environ. 131, 14–37 (2013).
[Crossref]
T. Schmugge, A. French, J. C. Ritchie, A. Rango, and H. Pelgrum, “Temperature and emissivity separation from multispectral thermal infrared observations,” Remote Sens. Environ. 79(2–3), 189–198 (2002).
[Crossref]
A. Gillespie, S. Rokugawa, T. Matsunaga, T. Matsunaga, and J. S. Cothern, “A temperature and emissivity separation algorithm for Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images,” IEEE Trans. Geosci. Rem. Sens. 36(4), 1113–1126 (1998).
[Crossref]
J. A. Sobrino and M. Romaguera, “Land surface temperature retrieval from MSG1-SEVIRI data,” Remote Sens. Environ. 92(2), 247–254 (2004).
[Crossref]
T. Schmugge, A. French, J. C. Ritchie, A. Rango, and H. Pelgrum, “Temperature and emissivity separation from multispectral thermal infrared observations,” Remote Sens. Environ. 79(2–3), 189–198 (2002).
[Crossref]
Z.-L. Li, B.-H. Tang, H. Wu, H. Z. Ren, G. J. Yan, Z. M. Wan, I. F. Trigo, and J. A. Sobrino, “Satellite-derived land surface temperature: Current status and perspectives,” Remote Sens. Environ. 131, 14–37 (2013).
[Crossref]
Z.-L. Li, H. Wu, N. Wang, S. Qiu, J. A. Sobrino, Z. Wan, B.-H. Tang, and G. J. Yan, “Land surface emissivity retrieval from satellite data,” Int. J. Remote Sens. 34(9–10), 3084–3127 (2013).
[Crossref]
J. Cristóbal, J. C. Jiménez-Muñoz, J. A. Sobrino, M. Ninyerola, and X. Pons, “Improvements in land surface temperature retrieval from the Landsat series thermal band using water vapor and air temperature,” J. Geophys. Res. 114(D8), D08103 (2009).
[Crossref]
J. A. Sobrino and M. Romaguera, “Land surface temperature retrieval from MSG1-SEVIRI data,” Remote Sens. Environ. 92(2), 247–254 (2004).
[Crossref]
J. A. Sobrino, Z.-L. Li, M. P. Stoll, and F. Becker, “Multi-channel and multi-angle algorithms for estimating sea and land surface temperature with ATSR data,” Int. J. Remote Sens. 17(11), 2089–2114 (1996).
[Crossref]
J. A. Sobrino, Z.-L. Li, M. P. Stoll, and F. Becker, “Multi-channel and multi-angle algorithms for estimating sea and land surface temperature with ATSR data,” Int. J. Remote Sens. 17(11), 2089–2114 (1996).
[Crossref]
Z.-L. Li, L. Jia, Z. B. Su, Z. M. Wan, and R. Zhang, “A new approach for retrieving precipitable water from ATSR2 split-window channel data over land area,” Int. J. Remote Sens. 24(24), 5095–5117 (2003).
[Crossref]
Z.-L. Li, B.-H. Tang, H. Wu, H. Z. Ren, G. J. Yan, Z. M. Wan, I. F. Trigo, and J. A. Sobrino, “Satellite-derived land surface temperature: Current status and perspectives,” Remote Sens. Environ. 131, 14–37 (2013).
[Crossref]
Z.-L. Li, H. Wu, N. Wang, S. Qiu, J. A. Sobrino, Z. Wan, B.-H. Tang, and G. J. Yan, “Land surface emissivity retrieval from satellite data,” Int. J. Remote Sens. 34(9–10), 3084–3127 (2013).
[Crossref]
C. Gao, X. Jiang, H. Wu, B.-H. Tang, Z. Li, and Z.-L. Li, “Comparison of land surface temperatures from MSG-2/SEVIRI and Terra/MODIS,” Int. J. Remote Sens. 6(1), 063606 (2012).
Z.-L. Li, R. L. Tang, Z. M. Wan, Y.-Y. Bi, C. H. Zhou, B.-H. Tang, G. J. Yan, and X. Y. Zhang, “A review of current methodologies for regional evapotranspiration estimation from remotely sensed data,” Sensors (Basel) 9(5), 3801–3853 (2009).
[Crossref]
[PubMed]
B.-H. Tang and Z.-L. Li, “Estimation of instantaneous net surface longwave radiation from MODIS cloud-free data,” Remote Sens. Environ. 112(9), 3482–3492 (2008).
[Crossref]
B.-H. Tang, Y. Y. Bi, Z.-L. Li, and J. Xia, “Generalized Split-Window algorithm for estimate of land surface temperature from Chinese geostationary FengYun meteorological satellite (FY-2C) data,” Sensors 8(2), 933–951 (2008).
[Crossref]
Z.-L. Li, R. L. Tang, Z. M. Wan, Y.-Y. Bi, C. H. Zhou, B.-H. Tang, G. J. Yan, and X. Y. Zhang, “A review of current methodologies for regional evapotranspiration estimation from remotely sensed data,” Sensors (Basel) 9(5), 3801–3853 (2009).
[Crossref]
[PubMed]
Z.-L. Li, B.-H. Tang, H. Wu, H. Z. Ren, G. J. Yan, Z. M. Wan, I. F. Trigo, and J. A. Sobrino, “Satellite-derived land surface temperature: Current status and perspectives,” Remote Sens. Environ. 131, 14–37 (2013).
[Crossref]
Z.-L. Li, H. Wu, N. Wang, S. Qiu, J. A. Sobrino, Z. Wan, B.-H. Tang, and G. J. Yan, “Land surface emissivity retrieval from satellite data,” Int. J. Remote Sens. 34(9–10), 3084–3127 (2013).
[Crossref]
Z. Wan and J. Dozier, “A Generalized split-window algorithm for retrieving land-surface temperature from space,” IEEE Trans. Geosci. Rem. Sens. 34(4), 892–905 (1996).
[Crossref]
Z.-L. Li, B.-H. Tang, H. Wu, H. Z. Ren, G. J. Yan, Z. M. Wan, I. F. Trigo, and J. A. Sobrino, “Satellite-derived land surface temperature: Current status and perspectives,” Remote Sens. Environ. 131, 14–37 (2013).
[Crossref]
Z.-L. Li, R. L. Tang, Z. M. Wan, Y.-Y. Bi, C. H. Zhou, B.-H. Tang, G. J. Yan, and X. Y. Zhang, “A review of current methodologies for regional evapotranspiration estimation from remotely sensed data,” Sensors (Basel) 9(5), 3801–3853 (2009).
[Crossref]
[PubMed]
Z.-L. Li, L. Jia, Z. B. Su, Z. M. Wan, and R. Zhang, “A new approach for retrieving precipitable water from ATSR2 split-window channel data over land area,” Int. J. Remote Sens. 24(24), 5095–5117 (2003).
[Crossref]
Z.-L. Li, H. Wu, N. Wang, S. Qiu, J. A. Sobrino, Z. Wan, B.-H. Tang, and G. J. Yan, “Land surface emissivity retrieval from satellite data,” Int. J. Remote Sens. 34(9–10), 3084–3127 (2013).
[Crossref]
Z.-L. Li, H. Wu, N. Wang, S. Qiu, J. A. Sobrino, Z. Wan, B.-H. Tang, and G. J. Yan, “Land surface emissivity retrieval from satellite data,” Int. J. Remote Sens. 34(9–10), 3084–3127 (2013).
[Crossref]
Z.-L. Li, B.-H. Tang, H. Wu, H. Z. Ren, G. J. Yan, Z. M. Wan, I. F. Trigo, and J. A. Sobrino, “Satellite-derived land surface temperature: Current status and perspectives,” Remote Sens. Environ. 131, 14–37 (2013).
[Crossref]
C. Gao, X. Jiang, H. Wu, B.-H. Tang, Z. Li, and Z.-L. Li, “Comparison of land surface temperatures from MSG-2/SEVIRI and Terra/MODIS,” Int. J. Remote Sens. 6(1), 063606 (2012).
B.-H. Tang, Y. Y. Bi, Z.-L. Li, and J. Xia, “Generalized Split-Window algorithm for estimate of land surface temperature from Chinese geostationary FengYun meteorological satellite (FY-2C) data,” Sensors 8(2), 933–951 (2008).
[Crossref]
Z.-L. Li, B.-H. Tang, H. Wu, H. Z. Ren, G. J. Yan, Z. M. Wan, I. F. Trigo, and J. A. Sobrino, “Satellite-derived land surface temperature: Current status and perspectives,” Remote Sens. Environ. 131, 14–37 (2013).
[Crossref]
Z.-L. Li, H. Wu, N. Wang, S. Qiu, J. A. Sobrino, Z. Wan, B.-H. Tang, and G. J. Yan, “Land surface emissivity retrieval from satellite data,” Int. J. Remote Sens. 34(9–10), 3084–3127 (2013).
[Crossref]
Z.-L. Li, R. L. Tang, Z. M. Wan, Y.-Y. Bi, C. H. Zhou, B.-H. Tang, G. J. Yan, and X. Y. Zhang, “A review of current methodologies for regional evapotranspiration estimation from remotely sensed data,” Sensors (Basel) 9(5), 3801–3853 (2009).
[Crossref]
[PubMed]
Z.-L. Li, L. Jia, Z. B. Su, Z. M. Wan, and R. Zhang, “A new approach for retrieving precipitable water from ATSR2 split-window channel data over land area,” Int. J. Remote Sens. 24(24), 5095–5117 (2003).
[Crossref]
Z.-L. Li, R. L. Tang, Z. M. Wan, Y.-Y. Bi, C. H. Zhou, B.-H. Tang, G. J. Yan, and X. Y. Zhang, “A review of current methodologies for regional evapotranspiration estimation from remotely sensed data,” Sensors (Basel) 9(5), 3801–3853 (2009).
[Crossref]
[PubMed]
Z.-L. Li, R. L. Tang, Z. M. Wan, Y.-Y. Bi, C. H. Zhou, B.-H. Tang, G. J. Yan, and X. Y. Zhang, “A review of current methodologies for regional evapotranspiration estimation from remotely sensed data,” Sensors (Basel) 9(5), 3801–3853 (2009).
[Crossref]
[PubMed]
Z. Wan and J. Dozier, “A Generalized split-window algorithm for retrieving land-surface temperature from space,” IEEE Trans. Geosci. Rem. Sens. 34(4), 892–905 (1996).
[Crossref]
A. Gillespie, S. Rokugawa, T. Matsunaga, T. Matsunaga, and J. S. Cothern, “A temperature and emissivity separation algorithm for Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) images,” IEEE Trans. Geosci. Rem. Sens. 36(4), 1113–1126 (1998).
[Crossref]
J. A. Sobrino, Z.-L. Li, M. P. Stoll, and F. Becker, “Multi-channel and multi-angle algorithms for estimating sea and land surface temperature with ATSR data,” Int. J. Remote Sens. 17(11), 2089–2114 (1996).
[Crossref]
C. Gao, X. Jiang, H. Wu, B.-H. Tang, Z. Li, and Z.-L. Li, “Comparison of land surface temperatures from MSG-2/SEVIRI and Terra/MODIS,” Int. J. Remote Sens. 6(1), 063606 (2012).
G. M. Jiang and Z.-L. Li, “Split-window algorithm for land surface temperature estimation from MSGI-SEVIRI data,” Int. J. Remote Sens. 29(20), 6067–6074 (2008).
[Crossref]
F. Becker and Z.-L. Li, “Toward a local split window method over land surface,” Int. J. Remote Sens. 11(3), 369–393 (1990).
[Crossref]
Z.-L. Li, L. Jia, Z. B. Su, Z. M. Wan, and R. Zhang, “A new approach for retrieving precipitable water from ATSR2 split-window channel data over land area,” Int. J. Remote Sens. 24(24), 5095–5117 (2003).
[Crossref]
Z.-L. Li, H. Wu, N. Wang, S. Qiu, J. A. Sobrino, Z. Wan, B.-H. Tang, and G. J. Yan, “Land surface emissivity retrieval from satellite data,” Int. J. Remote Sens. 34(9–10), 3084–3127 (2013).
[Crossref]
J. Cristóbal, J. C. Jiménez-Muñoz, J. A. Sobrino, M. Ninyerola, and X. Pons, “Improvements in land surface temperature retrieval from the Landsat series thermal band using water vapor and air temperature,” J. Geophys. Res. 114(D8), D08103 (2009).
[Crossref]
L. M. McMillin, “Estimation of sea surface temperature from two infrared window measurements with different absorption,” J. Geophys. Res. 80(36), 5113–5117 (1975).
[Crossref]
Z.-L. Li, B.-H. Tang, H. Wu, H. Z. Ren, G. J. Yan, Z. M. Wan, I. F. Trigo, and J. A. Sobrino, “Satellite-derived land surface temperature: Current status and perspectives,” Remote Sens. Environ. 131, 14–37 (2013).
[Crossref]
B.-H. Tang and Z.-L. Li, “Estimation of instantaneous net surface longwave radiation from MODIS cloud-free data,” Remote Sens. Environ. 112(9), 3482–3492 (2008).
[Crossref]
J. A. Sobrino and M. Romaguera, “Land surface temperature retrieval from MSG1-SEVIRI data,” Remote Sens. Environ. 92(2), 247–254 (2004).
[Crossref]
T. Schmugge, A. French, J. C. Ritchie, A. Rango, and H. Pelgrum, “Temperature and emissivity separation from multispectral thermal infrared observations,” Remote Sens. Environ. 79(2–3), 189–198 (2002).
[Crossref]
F. M. Göttsche and F. S. Olesen, “Modeling of diurnal cycles of brightness temperature extracted from METEOSAT data,” Remote Sens. Environ. 76(3), 337–348 (2001).
[Crossref]
B.-H. Tang, Y. Y. Bi, Z.-L. Li, and J. Xia, “Generalized Split-Window algorithm for estimate of land surface temperature from Chinese geostationary FengYun meteorological satellite (FY-2C) data,” Sensors 8(2), 933–951 (2008).
[Crossref]
Z.-L. Li, R. L. Tang, Z. M. Wan, Y.-Y. Bi, C. H. Zhou, B.-H. Tang, G. J. Yan, and X. Y. Zhang, “A review of current methodologies for regional evapotranspiration estimation from remotely sensed data,” Sensors (Basel) 9(5), 3801–3853 (2009).
[Crossref]
[PubMed]
J. C. Price, “The potential of remotely sensed thermal infrared data to infer surface soil moisture and evaporation,” Water Resour. 16, 787–795 (1990).
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