Bao Y., 2013: Simulations of summer monsoon climate over East Asia with a Regional Climate Model (RegCM) using Tiedtke convective parameterization scheme (CPS). Atmos. Res., 134, 35- 44.
Bao Y., 2013: Simulations of summer monsoon climate over East Asia with a Regional Climate Model (RegCM) using Tiedtke convective parameterization scheme (CPS). Atmos. Res., 134, 35- 44.
Basit A., S. R. Shoaib, N. Irfan, and R. Avila, 2012: Simulation of monsoon precipitation over South-Asia using RegCM3. ISRN Meteor. , 12, 754902, doi:10.5402/2012/754902.
Cao J., X. N. Zhang, Y. L. You, and R. W. Yang, 2007: Applicability of cumulus convective parameter schemes in RegCM3 to the rainfall over the Longitudinal Range-Gorge Region. Chinese Science Bulletin, 52( 2), 115- 121.
Cha D. H., D. K. Lee, and S. Y. Hong, 2008: Impact of boundary layer processes on seasonal simulation of the East Asian summer monsoon using a regional climate model. Meteorology and. Atmospheric Physics, 100( 1-4), 53- 72.
Chow K. C., J. C. Chan, 2010: A dual-scheme approach of cumulus parameterization for simulating the Asian summer monsoon. Meteorological Applications, 17( 3), 287- 297.
Dan L., J. Ji, Z. Xie, F. Chen, G. Wen, and J. E. Richey, 2012: Hydrological projections of climate change scenarios over the 3H region of China: A VIC model assessment. J. Geophys. Res, 117(D11). doi: 10.1029/2011JD017131.
Dash S. K., M. S. Shekhar, and G. P. Singh, 2006: Simulation of Indian summer monsoon circulation and rainfall using RegCM3. Theor. Appl. Climatol., 86( 1-4), 161- 172.
Davis N., J. Bowden, F. Semazzi, L. Xie, and B. Önol, 2009: Customization of RegCM3 regional climate model for eastern Africa and a tropical Indian Ocean domain. J. Climate, 22, 3595- 3616.
Dee, D.P., Coauthors, 2011: The ERA-Interim reanalysis: Configuration and performance of the data assimilation system. Quart. J. Roy. Meteor. Soc., 137, 553- 597.
Dickinson R. E., R. M. Errico, F. Giorgi, and G. T. Bates, 1989: A regional climate model for the western United States. Climatic Change, 15( 3), 383- 422.
Elguindi N., X. Bi, F. Giorgi, B. Nagarajan, J. Pal, F. Solmon, and G. Giuliani, 2013: Regional Climate Model RegCM User Manual Version 4.4. The Abdus Salam International Centre for Theoretical Physics, Strada Costiera, Trieste, Italy October 21, 2013, 54 pp.
Emanuel K. A., M. Živkovic-Rothman, 1999: Development and evaluation of a convection scheme for use in climate models. J. Atmos. Sci., 56( 11), 1766- 1782.
Fu C., S. Wang, Z. Xiong, W. J. Gutowski, D. K. Lee, J. L. McGregor, and M. S. Suh, 2005: Regional climate model intercomparison project for Asia. Bull. Amer. Meteor. Soc., 86( 2), 257- 266.
Gianotti R. L., D. Zhang, and E. A. Eltahir, 2012: Assessment of the regional climate model version 3 over the maritime continent using different cumulus parameterization and land surface schemes. J. Climate, 25( 2), 638- 656.
Giorgi F., G. T. Bates, 1989: The climatological skill of a regional model over complex terrain. Mon. Wea. Rev., 117( 11), 2325- 2347.
Giorgi F., M. R. Marinucci, and G. T. Bates, 1993: Development of a second generation regional climate model (RegCM2). I. Boundary layer and radiative transfer processes. Mon. Wea. Rev., 121, 2794- 2813.
Giorg F., Coauthors, 2012: RegCM4: Model description and preliminary tests over multiple CORDEX domains. Climate Res., 52, 7- 29.
Gochis D. J., W. J. Shuttleworth, and Z.-L. Yang, 2002: Sensitivity of the modeled North American monsoon regional climate to convective parameterization. Mon. Wea. Rev., 130, 1282- 1298.
Grell G. A., 1993: Prognostic evaluation of assumptions used by cumulus parameterizations. Mon. Wea. Rev., 121( 3), 764- 787.
Grell G. A., J. Dudhia, and D. R. Stauffer, 1994: A description of the fifth-generation Penn State/NCAR mesoscale model (MM5). NCAR Technical Note NCAR/TN-398+STR, doi: 10.5065/D60Z716B.
Holtslag A. A. M., E. I. F. De Bruijn, and H. L. Pan, 1990: A high resolution air mass transformation model for short-range weather forecasting. Mon. Wea. Rev., 118( 8), 1561- 1575.
Hourdin, F., Coauthors, 2006: The LMDZ4 general circulation model: Climate performance and sensitivity to parameterized physics with emphasis on tropical convection. Climate Dyn., 27( 7-8), 787- 813.
Huang W. R., J. C. L. Chan, and A. Y. M. Au-Yeung, 2013: Regional climate simulations of summer diurnal rainfall variations over East Asia and Southeast China. Climate Dyn., 40( 7-8), 1625- 1642.
Huffman G. J., D. T. Bolvin, E. J. Nelkin, D. B. Wolff, R. F. Adler, G. Gu, and E. F. Stocker, 2007: The TRMM Multi-satellite Precipitation Analysis (TMPA): Quasi-global, multiyear, combined-sensor precipitation estimates at fine scales. Journal of Hydrometeorology, 8( 1), 38- 55.
Im E. S., J. B. Ahn, A. R. Remedio, and W. T. Kwon, 2008a: Sensitivity of the regional climate of East/Southeast Asia to convective parameterizations in the RegCM3 modelling system. Part 1: Focus on the Korean peninsula. International Journal of Climatology, 28( 14), 1861- 1877.
Im E. S., W. J. Gutowski, and F. Giorgi, 2008b: Consistent changes in twenty-first century daily precipitation from regional climate simulations for Korea using two convection parameterizations. Geophys. Res. Lett., 35, doi: 10.1029/2008 GL034126.
Jones R. G., J. M. Murphy, and M. Noguer, 1995: Simulation of climate change over Europe using a nested regional climate model. Part I: Assessment of control climate, including sensitivity to location of lateral boundaries. Quart. J. Roy. Meteor. Soc., 121, 1413- 1449.
Kaspar F., U. Cubasch, 2008: Simulation of East African precipitation patterns with the regional climate model CLM. Meteorologische Zeitschrift, 17( 4), 511- 517.
Kiehl J. T., J. J. Hack, G. B. Bonan, B. A. Boville, D. L. Williamson, and P. J. Rasch, 1998: The national center for atmospheric research community climate model: CCM3. J. Climate, 11( 6), 1131- 1149.
Lau K. M., H. Weng, 2001: Coherent modes of global SST and summer rainfall over China: An assessment of the regional impacts of the 1997-98 El Nino. J. Climate, 14( 6), 1294- 1308.
Lee D. Y., C. Y. Tam, and C. K. Park, 2008: Effects of multicumulus convective ensemble on East Asian summer monsoon rainfall simulation. J. Geophys. Res., 113(D24), doi: 10.1029/ 2008JD009847.
Liang X. Z., K. E. Kunkel, and A. N. Samel, 2001: Development of a regional climate model for US Midwest applications. Part I: Sensitivity to buffer zone treatment. J. Climate, 14( 23), 4363- 4378.
Liang X. Z., M. Xu, K. E. Kunkel, G. A. Grell, and J. S. Kain, 2007: Regional climate model simulation of U.S.-Mexico summer precipitation using the optimal ensemble of two cumulus parameterizations. J. Climate, 20( 20), 5201- 5207.
Lin R., T. Zhou, and Y. Qian, 2014: Evaluation of global monsoon precipitation changes based on five reanalysis datasets. J. Climate, 27( 3), 1271- 1289.
Liu Y., Y. Ding, 2007: Sensitivity study of the South China Sea summer monsoon in 1998 to different cumulus parameterization schemes. Adv. Atmos. Sci., 24, 360-376, doi: 10.1007/s00376-007-0360-y.
Liu Y., Y. Ding, 2007: Sensitivity study of the South China Sea summer monsoon in 1998 to different cumulus parameterization schemes. Adv. Atmos. Sci., 24, 360-376, doi: 10.1007/s00376-007-0360-y.
Liu H., D. L. Zhang, and B. Wang, 2010: Impact of horizontal resolution on the regional climate simulations of the summer 1998 extreme rainfall along the Yangtze River Basin. J. Geophys. Res., 115(D12), doi: 10.1029/2009JD012746.
Mamgain A., L. Mariotti, E. Coppola, F. Giorgi, and S. K. Dash, 2013: Sensitivity of RegCM4.3 two convection schemes on Indian summer monsoon for the South Asia CORDEX domain. EGU General Assembly Conference Abstracts, Vol. 15, 4812.
Martínez-Castro, D., A. Vichot-Llano, A. Bezanilla-Morlot, A. Centella-Artola, 2013: Sensitivity study on convection schemes in regCM4.3, in the simulation of air temperature and precipitation fields in Central America and the Caribbean. International Conference on Regional Climate CORDEX, 4-7 November 2013, Brussels, Belgium.
Mitchell T. D., P. D. Jones, 2005: An improved method of constructing a database of monthly climate observations and associated high-resolution grids. International Journal of Climatology, 25( 6), 693- 712.
Octaviani M., K. Manomaiphiboon, 2011: Performance of regional climate model RegCM3 over Thailand. Climate Research, 47( 3), 171- 186.
Pal J. S., E. E. Small, and E. A. Eltahir, 2000: Simulation of regional-scale water and energy budgets: Representation of subgrid cloud and precipitation processes within RegCM. J. Geophys. Res., 105( D24), 29 579- 29 594.
Pal J. S., F. Giorgi, X. Bi, N. Elguindi, F. Solmon, S. A. Rauscher, and A. L. Steiner, 2007: Regional climate modeling for the developing world: The ICTP RegCM3 and RegCNET. Bull. Amer. Meteor. Soc., 88( 9), 1395- 1409.
Rahman M. M., M. N. Islam, A. U. Ahmed, and R. Afroz, 2007a: Comparison of RegCM3 simulated meteorological parameters in Bangladesh: Part I——Preliminary result for rainfall. Sri Lankan Journal of Physics, 8, 1- 9.
Rahman M. M., M. N. Islam, A. U. Ahmed, and R. Afroz, 2007b: Comparison of RegCM3 simulated meteorological parameters in Bangladesh: Part II——Preliminary result for temperature. Sri Lankan Journal of Physics, 8, 11- 19.
Reynolds R. W., 1988: A real-time global sea surface temperature analysis. J. Climate, 1, 75- 86.
Reynolds R. W., D. C. Marsico, 1993: An improved real-time global sea surface temperature analysis. J. Climate, 6, 114- 119.
Segele Z. T., L. M. Leslie, and P. J. Lamb, 2009: Evaluation and adaptation of a regional climate model for the Horn of Africa: Rainfall climatology and interannual variability. International Journal of Climatology, 29( 1), 47- 65.
Simmons A., C. Uppala, D. Dee, and S. Kobayashi, 2007: ERA-Interim: New ECMWF reanalysis products from 1989 onwards. ECMWF Newsletter, No. 110, 25- 35.
Singh A. P., R. P. Singh, P. V. S. Raju, and R. Bhatla, 2011: The impact of three different cumulus parameterization schemes on the Indian summer monsoon circulation. The International Journal of Ocean and Climate Systems, 2, 27- 44.
Singh G. P., J. H. Oh, J. Y. Kim, and O. Y. Kim, 2006: Sensitivity of summer monsoon precipitation over East Asia to convective parameterization schemes in RegCM3. Sola, 2, 29- 32.
Sinha P., U. C. Mohanty, S. C. Kar, S. K. Dash, and S. Kumari, 2013: Sensitivity of the GCM driven summer monsoon simulations to cumulus parameterization schemes in nested RegCM3. Theor. Appl. Climatol., 112( 1-2), 285- 306.
Sinha P., U. C. Mohanty, S. C. Kar, and S. Kumari, 2014: Role of the Himalayan orography in simulation of the Indian summer monsoon using RegCM3. Pure and Applied Geophysics, 171, 1385-1407, doi: 10.1007/s00024-013-0675-9.
Tiedtke M., 1993: Representation of clouds in large-scale models. Mon. Wea. Rev., 121, 3040- 3061.
Tiedtke M., 1989: A comprehensive mass flux scheme for cumulus parameterization in large-scale models. Mon. Wea. Rev, 117( 8), 1779- 1800.
Tchotchou L. A. D., M. Kamga, 2010: Sensitivity of the simulated African monsoon of summers 1993 and 1999 to convective parameterization schemes in RegCM3. Theor. Appl. Climatol., 100, 207- 220.
Uppala S., D. Dee, S. Kobayashi, P. Berrisford, and A. Simmons, 2008: Towards a climate data assimilation system: Status update of ERA-Interim. European Centre for Medium-Range Weather Forecasts (ECMWF) Newsletter, No. 115, 12- 18.
Vannitsem S., F. Chomé, 2005: One-way nested regional climate simulations and domain size. J. Climate, 18( 1), 229- 233.
Wang W., N. L. Seaman, 1997: A comparison study of convective parameterization schemes in a mesoscale model. Mon. Wea. Rev., 125( 2), 252- 278.
Wang B., R. Wu, 1997: Peculiar temporal structure of the South China Sea summer monsoon. Adv. Atmos. Sci., 14(2), 177-194, doi: 10.1007/s00376-997-0018-9.
Wang X., Q. Bao, K. Liu, G. Wu, and Y. Liu, 2011: Features of rainfall and latent heating structure simulated by two convective parameterization schemes. Science China Earth Sciences, 54( 11), 1779- 1788.
Wu W., A. H. Lynch, and A. Rivers, 2005: Estimating the uncertainty in a regional climate model related to initial and lateral boundary conditions. J. Climate, 18( 7), 917- 933.
Xue Y., R. Vasic, Z. Janjic, F. Mesinger, and K. E. Mitchell, 2007: Assessment of dynamic downscaling of the continental US regional climate using the Eta/SSiB regional climate model. J. Climate, 20( 16), 4172- 4193.
Yatagai A., K. Kamiguchi, O. Arakawa, A. Hamada, N. Yasutomi, and A. Kitoh, 2012: APHRODITE: Constructing a long-term daily gridded precipitation dataset for Asia based on a dense network of rain gauges. Bull. Amer. Meteor. Soc., 93( 9), 1401- 1415.
Yhang Y. B., S. Y. Hong, 2008: Improved physical processes in a regional climate model and their impact on the simulated summer monsoon circulations over East Asia. J. Climate, 21( 5), 963- 979.
Zanis P., C. Douvis, I. Kapsomenakis, I. Kioutsioukis, D. Melas, and J. S. Pal, 2009: A sensitivity study of the Regional Climate Model (RegCM3) to the convective scheme with emphasis in central eastern and southeastern Europe. Theor. Appl. Climatol., 97( 3-4), 327- 337.
Zhong Z., 2006: A possible cause of a regional climate model's failure in simulating the East Asian summer monsoon. Geophys. Res. Lett. , 33, L24707, doi:10.1029/2006GL027654.