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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Soil moisture-vegetation-precipitation feedback over North America: Its sensitivity to soil moisture climatology
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Soil moisture-vegetation-precipitation feedback over North America: Its sensitivity to soil moisture climatology

机译:北美土壤水分-植被-降水反馈:对土壤水分气候的敏感性

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Our previous studies examined how vegetation feedback at the seasonal time scale influenced the impact of soil moisture anomalies (SMAs) on subsequent summer precipitation with a modified version of the coupled Community Atmosphere Model-Community Land Model 3 that includes a predictive phenology scheme. Here we investigate the climatology sensitivity of soil moisture-vegetation- precipitation feedback using the same model as the baseline model (BASE) and its derivative with modifications to the model runoff parameterization as the experiment model (EXP), in which we eliminate the subsurface lateral drainage to reduce the known dry biases of BASE. With vegetation feedback ignored, precipitation is more sensitive to wet SMAs than dry SMAs in BASE; opposite to BASE, the wetter mean soil moisture in EXP leads to higher sensitivity of precipitation to dry SMAs than to wet SMAs. However, in both BASE and EXP, the impact of dry SMAs on subsequent precipitation persists longer than the impact of wet SMAs. With vegetation feedback included, EXP shows a positive feedback between vegetation and precipitation following both dry and wet SMAs in summer, while BASE shows a positive feedback following wet SMAs only, with no clear signal following dry SMAs due to dry soil biases. In BASE, the magnitude of precipitation changes due to vegetation feedback is comparable to that due to soil moisture feedback when more realistic SMAs are applied. In addition, a major difference is found in spring when the vegetation impact on subsequent precipitation is negative and significant in BASE, but not significant in EXP.
机译:我们以前的研究使用包含预测物候方案的耦合社区大气模型-社区土地模型3的修改版,研究了季节性时间尺度上的植被反馈如何影响土壤湿度异常(SMAs)对随后的夏季降水的影响。在这里,我们使用与基准模型(BASE)相同的模型及其对模型径流参数化的修改(如实验模型(EXP))来研究土壤水分-植被-降水反馈的气候敏感性。排水以减少BASE的已知干燥偏差。在忽略植被反馈的情况下,降水对湿SMA的敏感性比干SMA的更为敏感。与BASE相反,EXP中较湿的平均土壤湿度导致降水对干SMA的敏感性高于对湿SMA的敏感性。但是,在BASE和EXP中,干SMA对后续降水的影响持续时间长于湿SMA。考虑到植被反馈,EXP在夏季在干湿SMA情况下显示出植被与降水之间的正反馈,而BASE仅在湿SMA情况下显示出正反馈,而在干SMA下由于干燥的土壤偏见没有明确的信号。在BASE中,当应用更实际的SMA时,由于植被反馈而导致的降水变化幅度可与由于土壤水分反馈而导致的降水变化幅度相当。此外,春季发现主要差异是植被对后续降水的影响为负值,在BASE中显着,而在EXP中则不显着。

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