REFERENCES

1. Gong X. The belt & road initiative and China’s influence in Southeast Asia. Pac Rev 2019;32:635-65.

2. Wu SN, Lei Y, Zhang WH, Cheng DS. Reviews of the national cooperation of flood disaster risk reduction in the Mekong River Basin. Sci Technol Rev 2020;38:80-7. (in Chinese).

3. Tan XS, Wang J, Tang XP, et al. Variation trends of climate change and hydrological responses of individual regions in Lancang-Mekong River Basin from 1960-2012. J Water Resour Water Eng 2020;31:1-8.

4. Wang S, Zhang L, She D, Wang G, Zhang Q. Future projections of flooding characteristics in the Lancang-Mekong River Basin under climate change. J Hydrol 2021;602:126778.

5. Kang H, Sridhar V, Ali SA. Climate change impacts on conventional and flash droughts in the Mekong River Basin. Sci Total Environ 2022;838:155845.

6. Chen XR, Wang XY, Baiyinbaoligao. Analysis of spatial and temporal distribution of flood losses in Mekong River Basin since 1962. J Catastrophol 2019;34:113-6. (in Chinese).

7. Zhou BT, Qian J. Changes of weather and climate extremes in the IPCC AR6. Clim Chang Res 2021;17:713-8. (in Chinese). Available from: https://www.researchgate.net/publication/372656309_Changes_of_weather_and_climate_extremes_in_the_IPCC_AR6 [Last accessed on 19 Nov 2024]

8. Lutz AF, Immerzeel WW, Shrestha AB, Bierkens MFP. Consistent increase in high Asia’s runoff due to increasing glacier melt and precipitation. Nat Clim Chang 2014;4:587-92.

9. Muetzelfeldt MR, Schiemann R, Turner AG, Klingaman NP, Vidale PL, Roberts MJ. Evaluation of Asian summer precipitation in different configurations of a high-resolution general circulation model in a range of decision-relevant spatial scales. Hydrol Earth Syst Sci 2021;25:6381-405.

10. Alexander LV, Arblaster JM. Historical and projected trends in temperature and precipitation extremes in Australia in observations and CMIP5. Weather Clim Extrem 2017;15:34-56.

11. Chen XC, Xu Y, Xu CH, Yao Y. Assessment of precipitation simulations in China by CMIP5 multi-models. Clim Chang Res 2014;10:217-25. (in Chinese).

12. Hu Y, Xu Y, Li J, Han Z. Evaluation on the performance of CMIP6 global climate models with difference horizontal resolution in simulating the precipitation over China. Clim Chang Res 2021;17:730-43. (in Chinese). Available from: https://www.researchgate.net/publication/373519285_CMIP6butongfenbianluquanqiuqihoumoshiduizhongguojiangshuimoninenglipinggu [Last accessed on 19 Nov 2024]

13. Ayugi B, Zhihong J, Zhu H, et al. Comparison of CMIP6 and CMIP5 models in simulating mean and extreme precipitation over East Africa. Intl J Climatol 2021;41:6474-96.

14. Gusain A, Ghosh S, Karmakar S. Added value of CMIP6 over CMIP5 models in simulating Indian summer monsoon rainfall. Atmos Res 2020;232:104680.

15. Bağçaci SÇ, Yucel I, Duzenli E, Yilmaz MT. Intercomparison of the expected change in the temperature and the precipitation retrieved from CMIP6 and CMIP5 climate projections: a mediterranean hot spot case, Turkey. Atmos Res 2021;256:105576.

16. Xin X, Wu T, Zhang J, Yao J, Fang Y. Comparison of CMIP6 and CMIP5 simulations of precipitation in China and the East Asian summer monsoon. Intl J Climatol 2020;40:6423-40.

17. Hariadi MH, van der Schrier G, Steeneveld G, et al. Evaluation of onset, cessation and seasonal precipitation of the Southeast Asia rainy season in CMIP5 regional climate models and HighResMIP global climate models. Intl J Climatol 2022;42:3007-24.

18. Liang J, Meng C, Wang J, Pan X, Pan Z. Projections of mean and extreme precipitation over China and their resolution dependence in the HighResMIP experiments. Atmos Res 2023;293:106932.

19. Yang X, Zhou B, Xu Y, Han Z. CMIP6 evaluation and projection of temperature and precipitation over China. Adv Atmos Sci 2021;38:817-30.

20. Xiao YJ, Li J, Li NN. Evaluation of CMIP6 HighResMIP models in simulating precipitation over Tibetan Plateau. Torrential Rain Dis 2022; 41(2):215-223. (in Chinese).

21. Huang Z, Wu X, Mao J. An evaluation for impacts of the horizontal resolution of CMIP6 models on simulating extreme summer rainfall over Southwest China. Plateau Meteorol 2021;40:1470-83. (in Chinese).

22. Try S, Tanaka S, Tanaka K, Sayama T, Khujanazarov T, Oeurng C. Comparison of CMIP5 and CMIP6 GCM performance for flood projections in the Mekong River Basin. J Hydrol 2022;40:101035.

23. Xin X, Wu T, Jie W, Zhang J. Impact of higher resolution on precipitation over China in CMIP6 HighResMIP models. Atmosphere 2021;12:762.

24. Dong W, Krasting JP, Guo H. Analysis of precipitation diurnal cycle and variance in multiple observations, CMIP6 models, and a series of GFDL-AM4.0 simulations. J Clim 2023;36:8637-55.

25. He DM. Analysis of hydrological characteristics in Lancang-Mekong river. Yunnan Geogr Environ Res 1995;1:58-74. (in Chinese). Available from: https://kns.cnki.net/kcms2/article/abstract?v=Oa1N_PzK0nRsDYvwhjSFvTJ_LR6lRBDAoC5UVSpy3WC0U7feWbjEjs6FThG4r6IIkbY0J53sNxdrZhhMZDahzt26wvZvkFp8QyX1DS3qklJyEKyj0qNzocrjM_lH4PyRh7aCURfjhZmn46nvtCZioLnkxlvZz-w9N-sTxFwtuHwJSPT4exCJTnIPpTW5oFbj4Au8IoI5kT8=&uniplatform=NZKPT [Last accessed on 27 Nov 2024]

26. Long D, Han ZY, Wang YM. Projection of future droughts across the Lancang-Mekong river under a changing environment. Adv Water Sci 2022;33:766-79. (in Chinese).

27. Li R, Huang H, Yu G, Yu H. Contributions of climatic variation and human activities to streamflow changes in the Lancang-Mekong River Basin. Resour Sci 2021;43:2428-41. (in Chinese).

28. Hersbach H, Bell B, Berrisford P, et al. The ERA5 global reanalysis. Quart J Royal Meteoro Soc 2020;146:1999-2049.

29. Haarsma RJ, Roberts MJ, Vidale PL, et al. High resolution model intercomparison project (HighResMIP v1.0) for CMIP6. Geosci Model Dev 2016;9:4185-208.

30. Wang L, Bao Q, He B. Short commentary on CMIP6 high resolution model intercompanson project (HighResMIP). Clim Chang Res 2019;15:498-502. (in Chinese). Available from: https://www.cnki.com.cn/Article/CJFDTotal-QHBH201905009.htm [Last accessed on 27 Nov 2024]

31. Yang KK, Guo DL, Hua W, Ma D, Xin YT. Evaluation and projection of CMIP6 HighResMIP in simulating surface air temperature and precipitation over Tibetan Plateau. Trans Atmos Sci 2023;46:193-204.

32. Wu T, Yu R, Lu Y, et al. BCC-CSM2-HR: a high-resolution version of the Beijing climate center climate system model. Geosci Model Dev 2021;14:2977-3006.

33. Haarsma R, Acosta M, Bakhshi R, et al. HighResMIP versions of EC-Earth: EC-Earth3P and EC-Earth3P-HR - description, model computational performance and basic validation. Geosci Model Dev 2020;13:3507-27.

34. Roberts MJ, Baker A, Blockley EW, et al. Description of the resolution hierarchy of the global coupled HadGEM3-GC3.1 model as used in CMIP6 HighResMIP experiments. Geosci Model Dev 2019;12:4999-5028.

35. Chen T, Zhang Y, Li N. Evaluation of CMIP6 HighResMIP models and ERA5 reanalysis in simulating summer precipitation over the Tibetan Plateau. Atmosphere 2023;14:1015.

36. Mizuta R, Yoshimura H, Murakami H, et al. Climate simulations using MRI-AGCM3.2 with 20-km grid. J Meteorol Soc Japan 2012;90A:233-58.

37. Kodama C, Ohno T, Seiki T, et al. The nonhydrostatic ICosahedral atmospheric model for CMIP6 HighResMIP simulations (NICAM16-S): experimental design, model description, and impacts of model updates. Geosci Model Dev 2021;14:795-820.

38. Abramowitz G, Herger N, Gutmann E, et al. ESD reviews: model dependence in multi-model climate ensembles: weighting, sub-selection and out-of-sample testing. Earth Syst Dynam 2019;10:91-105.

39. Merrifield AL, Brunner L, Lorenz R, Medhaug I, Knutti R. An investigation of weighting schemes suitable for incorporating large ensembles into multi-model ensembles. Earth Syst Dynam 2020;11:807-34.

40. Li J, Yu R, Yuan W, Chen H, Sun W, Zhang Y. Precipitation over East Asia simulated by NCAR CAM5 at different horizontal resolutions. J Adv Model Earth Syst 2015;7:774-90.

41. Taylor KE. Summarizing multiple aspects of model performance in a single diagram. J Geophys Res 2001;106:7183-92.

42. Sun Q, Miao C, Duan Q. Projected changes in temperature and precipitation in ten river basins over China in 21st century. Intl J Climatol 2015;35:1125-41.

43. Jin Z, Ge F, Chen Q, Lin Z. To what extent horizontal resolution improves the simulation of precipitation in CMIP6 HighResMIP models over Southwest China? Front Earth Sci 2023;10:1003748.

44. Chen Q, Ge F, Jin Z, Lin Z. How well do the CMIP6 HighResMIP models simulate precipitation over the Tibetan Plateau? Atmos Res 2022;279:106393.

45. Norris J, Hall A, Neelin JD, Thackeray CW, Chen D. Evaluation of the tail of the probability distribution of daily and Subdaily precipitation in CMIP6 models. J Clim 2021;34:2701-21.

46. Ou T, Chen D, Tang J, et al. Wet bias of summer precipitation in the northwestern Tibetan Plateau in ERA5 is linked to overestimated lower-level southerly wind over the plateau. Clim Dyn 2023;61:2139-53.

47. Lavers DA, Simmons A, Vamborg F, Rodwell MJ. An evaluation of ERA5 precipitation for climate monitoring. Quart J Royal Meteoro Soc 2022;148:3152-65.

48. Jiao D, Xu N, Yang F, Xu K. Evaluation of spatial-temporal variation performance of ERA5 precipitation data in China. Sci Rep 2021;11:17956.

49. Liang-Liang L, Jian L, Ru-Cong Y. Evaluation of CMIP6 HighResMIP models in simulating precipitation over central Asia. Adv Clim Chang Res 2022;13:1-13.

50. Liu J, Liu Y, Chen X, et al. Extreme precipitation events variation and projection in the Lancang-Mekong River Basin based on CMIP6 simulations. Atmosphere 2023;14:1350.

51. Karl TR, Nicholls N, Ghazi A. Clivar/GCOS/WMO workshop on indices and indicators for climate extremes workshop summary. Clim Chang 1999;42:3-7.

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