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Impacts of land use land cover on temperature trends over the continental United States: assessment using the North American Regional Reanalysis

机译:土地利用土地覆盖对美国大陆上温度趋势的影响:使用北美区域再分析进行的评估

摘要

We investigate the sensitivity of surface temperature trends to land use land cover change (LULC) over the conterminous United States (CONUS) using the observation minus reanalysis (OMR) approach. We estimated the OMR trends for the 1979–2003 period from the US Historical Climate Network (USHCN), and the NCEP-NCAR North American Regional Reanalysis (NARR). We used a new mean square differences (MSDs)-based assessment for the comparisons between temperature anomalies from observations and interpolated reanalysis data. Trends of monthly mean temperature anomalies show a strong agreement, especially between adjusted USHCN and NARR (r = 0.9 on average) and demonstrate that NARR captures the climate variability at different time scales. OMR trend results suggest that, unlike findings from studies based on the global reanalysis (NCEP/NCAR reanalysis), NARR often has a larger warming trend than adjusted observations (on average, 0.28 and 0.27 °C/decade respectively).OMR trends were found to be sensitive to land cover types. We analysed decadal OMR trends as a function of land types using the Advanced Very High Resolution Radiometer (AVHRR) and new National Land Cover Database (NLCD) 1992–2001 Retrofit Land Cover Change. The magnitude of OMR trends obtained from the NLDC is larger than the one derived from the ‘static’ AVHRR. Moreover, land use conversion often results in more warming than cooling.Overall, our results confirm the robustness of the OMR method for detecting non-climatic changes at the station level, evaluating the impacts of adjustments performed on raw observations, and most importantly, providing a quantitative estimate of additional warming trends associated with LULC changes at local and regional scales. As most of the warming trends that we identify can be explained on the basis of LULC changes, we suggest that in addition to considering the greenhouse gases–driven radiative forcings, multi-decadal and longer climate models simulations must further include LULC changes.
机译:我们使用观测减去再分析(OMR)方法调查了美国本土(CONUS)上地表温度趋势对土地利用的土地覆盖变化(LULC)的敏感性。我们根据美国历史气候网络(USHCN)和NCEP-NCAR北美区域再分析(NARR)估算了1979-2003年期间的OMR趋势。我们使用了一种基于均方差(MSD)的新评估方法来比较观测值和插值再分析数据中的温度异常。月平均温度异常趋势显示出很强的一致性,特别是在调整后的USHCN和NARR之间(平均r = 0.9),并表明NARR捕获了不同时间尺度的气候变化。 OMR趋势结果表明,与基于全球再分析(NCEP / NCAR再分析)的研究结果不同,NARR的变暖趋势通常比调整后的观测值大(平均分别为0.28和0.27°C /十年)。对土地覆盖类型敏感。我们使用先进的超高分辨率辐射计(AVHRR)和新的国家土地覆盖数据库(NLCD)1992-2001年改造土地覆盖变化,分析了十年OMR趋势随土地类型的变化。从NLDC获得的OMR趋势的幅度大于从“静态” AVHRR获得的OMR趋势的幅度。此外,土地利用的转换通常导致比变暖更多的变暖。总体而言,我们的结果证实了OMR方法的稳健性,该方法可用于检测站级非气候变化,评估调整对原始观测值的影响,最重要的是,提供定量估计与局部和区域尺度上的土地利用,土地利用变化相关的其他变暖趋势。由于我们确定的大多数变暖趋势都可以根据LULC的变化来解释,因此我们建议,除了考虑温室气体驱动的辐射强迫外,多年代和更长的气候模式模拟还必须进一步包括LULC的变化。

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