Published September 2018 | Version v1
Journal article

Role of resolution in regional climate change projections over China

  • 1. China Meteorological Administration, National Climate Center (China)
  • 2. University of Connecticut, Department of Civil and Environmental Engineering and Center for Environmental Sciences and Engineering (United States)
  • 3. Chinese Academy of Sciences, Climate Change Research Center, Institute of Atmospheric Physics (China)

Description

This paper investigates the sensitivity of projected future climate changes over China to the horizontal resolution of a regional climate model RegCM4.4 (RegCM), using RCP8.5 as an example. Model validation shows that RegCM performs better in reproducing the spatial distribution and magnitude of present-day temperature, precipitation and climate extremes than the driving global climate model HadGEM2-ES (HadGEM, at 1.875° × 1.25° degree resolution), but little difference is found between the simulations at 50 and 25 km resolutions. Comparison with observational data at different resolutions confirmed the added value of the RCM and finer model resolutions in better capturing the probability distribution of precipitation. However, HadGEM and RegCM at both resolutions project a similar pattern of significant future warming during both winter and summer, and a similar pattern of winter precipitation changes including dominant increase in most areas of northern China and little change or decrease in the southern part. Projected precipitation changes in summer diverge among the three models, especially over eastern China, with a general increase in HadGEM, little change in RegCM at 50 km, and a mix of increase and decrease in RegCM at 25 km resolution. Changes of temperature-related extremes (annual total number of daily maximum temperature > 25 °C, the maximum value of daily maximum temperature, the minimum value of daily minimum temperature in the three simulations especially in the two RegCM simulations are very similar to each other; so are the precipitation-related extremes (maximum consecutive dry days, maximum consecutive 5-day precipitation and extremely wet days' total amount). Overall, results from this study indicate a very low sensitivity of projected changes in this region to model resolution. While fine resolution is critical for capturing the spatial variability of the control climate, it may not be as important for capturing the climate response to homogeneous forcing (in this case greenhouse gas concentration changes).

Additional details

Identifiers

Publishing Information

Journal Title
Climate Dynamics
Journal Volume
51
Journal Issue
5-6
Journal Page Range
p. 2375-2396
ISSN
0930-7575
CODEN
CLDYEM

INIS

Country of Publication
Germany
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
51016299
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
CHINA; CLIMATE MODELS; CLIMATES; CLIMATIC CHANGE; CONTROL; DATA; GREENHOUSE GASES; PRECIPITATION; RESOLUTION; SENSITIVITY; SIMULATION; SPATIAL DISTRIBUTION; VALIDATION
Descriptors DEC
ASIA; DISTRIBUTION; INFORMATION; MATHEMATICAL MODELS; SEPARATION PROCESSES; TESTING

Optional Information

Copyright
Copyright (c) 2017 The Author(s)