基于参数和非参数方法的土壤深度温度趋势研究(Shahrud站)

S. Shiukhy Soqanloo, S. Golshan, M. Khoshravesh
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引用次数: 0

摘要

气候变化的影响可以从地表释放到土壤深处,从而影响土壤热状态。土壤中的热能在引起气候变化中起着非常重要的作用。为了评估和检测气候变化、土壤深度温度,本研究获得了沙赫德站1992-2014年3、9和15 h的2米(屏)日气温和土壤深度日温度(5-10-20-30-50 ~ 100 cm)的实测数据。采用气候变化检测比较处理均值。此外,为了检测与年、季节和月时间序列相关的趋势及其与土壤深度温度的关系,采用了参数方法(回归分析和Pearson)和非参数方法(Mann-Kendall, Spearman)。结果表明,除1、2、3月份外,其余月份土壤温度均呈升高趋势。在季节时间序列上,除冬季外,其余季节土壤深度温度均呈上升趋势。事实上,根据研究结果,春、夏、秋三季土壤温度均有所升高。年土壤深度温度检测趋势表明,除Pearson相关系数法外,各深度土壤温度均呈上升趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of the Soil Depths Temperature Trend Using Parametric and Non-Parametric Methods (Shahrud Station)
The effects of climate change can be released from the surface to the soil depth, thereby affecting soil thermal regime. Thermal energy in the soil plays a very important role in causing climate changes. In this study, for the assessment and detection of the climate changes, soil depths temperature, the measured data related to the daily air temperature at a height of 2 meters (screen) during the years (1951-2014), and the soil depths daily temperature (5-10-20-30-50 to 100 cm), for 3, 9 and 15 hours, were obtained during a period (1992-2014) in Shahrud station. The climate change detection was employed to compare the treatment mean. As well, for detection of trends related to the annual, seasonal and monthly time series and their relation to the soil depths temperature, parametric methods (regression analysis and Pearson) and nonparametric (Mann-Kendall, Spearman) were applied. The results showed that the soil temperature was increased in all months except January, February and March. Also, in the seasonal time series, the soil depths temperature was increased in all seasons except winter. In fact, based on the results, the soil temperature in spring, summer and autumn was increased. Detection trends of the annual soil depths temperature showed that, except for the Pearson correlation coefficient method, soil temperature was increased at all soil depths.
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