Biblio
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Operational monitoring of coastal and marine environment with spaceborne SAR systems: Where are we now and where are we going. Proceedings of the second workshop on coastal and marine applications of SAR, 8-12 september 2003, Svalbard, Norway, ESA SP-565 3-15 (2004).
Radar satellites: A new tool for pollution monitoring. Coastal Management 61-71 (1996).
Sea ice monitoring in the Arctic using satellite SAR images. Master Thesis No. 69 (2007).
Appendix 3: Climate Science Supplement. Climate Change Impacts in the United States: The third National Climate Assessment (2014).doi:10.7930/J0KS6PHH
Appendix 4: Frequently Asked Questions. Climate Change Impacts in the United States: The third National Climate Assessment (2014).doi:10.7930/J0G15XS3
Ch. 2: Our Changing Climate. Climate Change Impacts in the United States: The third National Climate Assessment (2014).doi:10.7930/J0KW5CXT
Assimilating altimetry data into a HYCOM model of the Pacific: Ensemble Optimal Interpolation versus Ensemble Kalman Filter. Journal of Atmospheric and Oceanic Technology 27, 753-765 (2010). Abstract
Download: wan10.pdf (3.84 MB)
Initial ensemble generation and validation for ocean data assimilation using HYCOM in the Pacific. Ocean Dynamics 81-99 (2008).
A "Dressed" Ensemble Kalman Filter Using the Hybrid Coordinate Ocean Model in the Pacific. Advances in Atmospheric Sciences 26, 1042-1052 (2009). Abstract
Download: fulltext-26.pdf (974.65 KB)
Seasonal predictions initialised by assimilating sea surface temperature observations with the EnKF. Climate Dynamics 19, (2019).
Anthropogenic agent implicated as a prime driver of shift in precipitation in eastern China in the late 1970s. Atmospheric Chemistry and Physics (ACP) 13, (2013).
Alleviating the bias induced by the linear analysis update with an isopycnal ocean model. Quarterly Journal of the Royal Meteorological Society 142, (2016). Abstract
The response of the North Pacific Decadal Variability to strong tropical volcanic eruptions. Climate Dynamics 39, (2012).
Modulation of ENSO evolution by strong tropical volcanic eruptions. Climate Dynamics (2017).doi:10.1007/s00382-017-4021-2
Impact of global sea surface temperature on the recent early winter Arctic tropospheric warming in coordinated large ensemble simulations 协调大集合模拟下全球海表面温度对北极对流层早冬增暖的影响. Atmospheric and Oceanic Science Letters 14, (2021).
Assimilation of lidar signals: Application to aerosol forecasting in the western Mediterranean basin. Atmospheric Chemistry and Physics (ACP) 14, (2014).
Optimising assimilation of hydrographic profiles into isopycnal ocean models with ensemble data assimilation. Ocean Modelling 114, (2017).
Benefit of vertical localization for sea surface temperature assimilation in isopycnal coordinate model. Frontiers in Climate 4, (2022).
Modelling and assimilation of lidar signals over Greater Paris during the MEGAPOLI summer campaign. Atmospheric Chemistry and Physics 14, 3511–3532 (2014).
Two climate change issues deserving intense attention in China. Bulletin of the Chinese Academy of Sciences 23, (2009).
The response of the North Pacific Decadal Variability to strong tropical volcanic eruptions. Climate Dynamics (2012).doi:10.1007/s00382-012-1373-5 Download: art%3A10.1007%2Fs00382-012-1373-5.pdf (2.42 MB)
Assimilation of ground versus lidar observations for PM$_{10}$ forecasting. Atmospheric Chemistry and Physics 13, 269–283 (2013).
Mapping sea surface velocities in the Changjiang coastal zone with advanced synthetic aperture radar. Acta Oceanologica Sinica 33, (2014).
Anthropogenic Forcing Agents and the “Southern Flood and Northern Drought” in Eastern China. Atmospheric Chemistry and Physics Discussions (ACPD) 13, (2013).
Interdisciplinary cooperation on impacts of climate change in the Arctic. Eos, Transactions, American Geophysical Union 93(39), (2012).