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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Exploring a Variable-Resolution Approach for Simulating Regional Climate in the Rocky Mountain Region Using the VR-CESM
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Exploring a Variable-Resolution Approach for Simulating Regional Climate in the Rocky Mountain Region Using the VR-CESM

机译:使用VR-CESM探索模拟岩石山区区域气候的可变分辨方法

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The reliability of climate simulations and projections, particularly in the regions with complex terrains, is greatly limited by the model resolution. In this study we evaluate the variable-resolution Community Earth System Model (VR-CESM) with a high-resolution (0.125°) refinement over the Rocky Mountain region. The VR-CESM results are compared with observations, as well as CESM simulation at a quasi-uniform 1° resolution (UNIF) and Canadian Regional Climate Model version 5 (CRCM5) simulation at a 0.11° resolution. We find that VR-CESM is effective at capturing the observed spatial patterns of temperature, precipitation, and snowpack in the Rocky Mountains with the performance comparable to CRCM5, while UNIF is unable to do so. VR-CESM and CRCM5 simulate better the seasonal variations of precipitation than UNIF, although VR-CESM still overestimates winter precipitation whereas CRCM5 and UNIF underestimate it. All simulations distribute more winter precipitation along the windward (west) flanks of mountain ridges with the greatest overestimation in VR-CESM. VR-CESM simulates much greater snow water equivalent peaks than CRCM5 and UNIF, although the peaks are still 10-40% less than observations. Moreover, the frequency of heavy precipitation events (daily precipitation ≥ 25 mm) in VR-CESM and CRCM5 is comparable to observations, whereas the same events in UNIF are an order of magnitude less frequent. In addition, VR-CESM captures the observed occurrence frequency and seasonal variation of rain-on-snow days and performs better than UNIF and CRCM5. These results demonstrate the VR-CESM's capability in regional climate modeling over the mountainous regions and its promising applications for climate change studies.
机译:气候模拟和投影的可靠性,特别是在具有复杂地形的区域,受模型分辨率的极大限制。在这项研究中,我们评估了在岩石山区的高分辨率(0.125°)细化的可变分辨率社区地球系统模型(VR-CESM)。将VR-CESM结果与观察结果进行比较,以及以0.11°分辨率的准均匀1°分辨率(UNIF)和加拿大区域气候模型版本5(CRCM5)模拟的CESM模拟。我们发现VR-CESM有效地捕获了岩石山脉中观察到的温度,降水和积雪的空间模式,随着CRCM5的性能,而UIF无法这样做。 VR-CESM和CRCM5虽然VR-CESM仍然高估冬季降水,但CRCM5和UNIF仍然高估了比UNIF更好地模拟了比UNIF的季节性变化更好。所有模拟沿着山脊的挡风玻璃侧翼分布了更多的冬季降水,在VR-CESM中最大的高度估计。 VR-CESM模拟比CRCM5和UNIF更大的雪水当量峰,但峰值仍然比观察结果小10-40%。此外,VR-CESM和CRCM5中的重度降水事件(每日沉淀≥25mm)的频率与观察结果相当,而UNIF中的相同事件是频率较小的数量级。此外,VR-CESM捕获了观察到的雨雪日的发生频率和季节性变化,而且比UNIF和CRCM5更好地表现更好。这些结果展示了VR-CESM在山区区域气候建模中的能力及其对气候变化研究的有前途的应用。

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