密西西比河流域土壤湿度与气温的相互作用。

Chunling Tang, Dong Chen
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引用次数: 10

摘要

预计未来气温还会继续升高。土壤湿度与近地表气温的关系对气候变化和极端气候具有重要意义。采用分位数回归模型、小波相干模型和Mann-Kendall相关模型对1950 - 2010年密西西比河流域土壤湿度与温度的关系进行了评价。结果表明:①上、下游盆地异常气温与异常土壤湿度呈负相关,而中部盆地异常气温与异常土壤湿度的相关性不明显;这两个变量的高分位数(第90位)的相关性更强。②土壤湿度和气温异常在年际频率上表现出较强的一致性,表明两者具有年际相关性。③年气温与土壤湿度呈显著负相关,表明土壤干(湿)导致盆地气候暖(凉)。这些结果对未来的气候变化研究和水资源管理具有潜在的应用价值。此外,土壤湿度与气温在年尺度上的密切关系可以提高温度的可预测性。
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Interaction between Soil Moisture and Air Temperature in the Mississippi River Basin.
Increasing air temperatures are expected to continue in the future. The relation between soil moisture and near surface air temperature is significant for climate change and climate extremes. Evaluation of the relations between soil moisture and temperature was performed by developing a quantile regression model, a wavelet coherency model, and a Mann-Kendall correlation model from 1950 to 2010 in the Mississippi River Basin. The results indicate that first, anomaly air temperature is negatively correlated to anomaly soil moisture in the upper and lower basin, and however, the correlation between them are mixed in the middle basin. The correlation is stronger at the higher quantile (90th) of the two variables. Second, anomaly soil moisture and air temperature show strong coherency in annual frequency, indicating that the two variables are interannually correlated. Third, annual air temperature is significant negatively related to soil moisture, indicating that dry (wet) soil leads to warm (cool) weather in the basin. These results have potential application to future climate change research and water resource management. Also, the strong relationship between soil moisture and air temperature at annual scale could result in improved temperature predictability.
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