primarily supported by the National Fundamental Research 973 Program of China(Grant Nos.2015CB452801 and 2013CB430100);the National Natural Science Foundation of China(Grant No.41105035);the Fundamental Research Funds for the Central Universities(Grant Nos.20620140054 and 20620140347);supported by NOAA’s Hurricane Forecast and Improvement Project(HFIP),Grant Nos.NA14NWS4680028 and NASA Grant NNX14AM69G
The effects of surface flux parameterizations on tropical cyclone(TC) intensity and structure are investigated using the Advanced Research Weather Research and Forecasting(WRF-ARW) modeling system with high-resolu...
Supported by the National Natural Science Foundation of China (41105036, 41105035, 40730948, 40830958, and 40921160382)
Recent publications have investigated the interactions between the extratropical transitions (ETs) of tropical cyclones (TCs) and midlatitude circulations; however, studies of ET events have rarely considered the ...
National Natural Science Foundation of China (41105036,41105035,40730948,40830958,40921160382);National Grand Fundamental Research "973" Program of China (2009CB421502)
Interannual variability of landfalling tropical cyclones(TCs) in China during 1960-2010 is investigated.By using the method of partial least squares regression(PLS-regression),canonical ENSO and ENSO Modoki are identi...
National Natural Science Foundation of China(40730948,40830958,41105035, 40921160382);National Grand Fundamental Research 973 Program of China(2009CB421502);social commonweal research program(GYHY201006007)
Recent studies have shown that surface fluxes and exchange coefficients are particularly important to models attempting to simulate the evolution and maintenance of hurricanes or typhoons.By using an advanced research...