Department of Physics, Federal University of Technology Akure, Akure 340252, Ondo State, Nigeria.
Michael and Cecilia Ibru University, Ughelli 333105, Delta State, Nigeria.
Chaos. 2021 Mar;31(3):033110. doi: 10.1063/5.0029658.
Air and soil temperatures are important agrometeorological variables with several applications. Understanding the complex behavior of air and soil temperatures, as well as their interaction, will help in agricultural planning. Multifractal detrended fluctuation and multifractal cross-correlation analysis of air and soil temperatures were carried out in three locations (Akure, Abuja, and Bauchi) within a tropical country, Nigeria. Monthly and annual air and soil temperatures measured at 5 min intervals for a period of 1 year were obtained and analyzed for multifractality. There is evidence of seasonal dependence in the multifractal behavior of monthly soil temperature. Monthly temperatures (air and soil) were found to have higher degrees of multifractality than annual temperatures. Furthermore, latitudinal dependence was observed in the multifractal behavior of air and soil temperatures. The cross-correlation between air and soil temperatures also shows multifractality with persistence at the monthly scale and anti-persistence at the annual scale. This work has shed light on the complex relationship between air and soil temperatures, and the results will be useful in modeling the two variables.
空气温度和土壤温度是重要的农业气象变量,具有多种应用。了解空气温度和土壤温度的复杂行为及其相互作用,将有助于农业规划。在尼日利亚的三个地点(阿库雷、阿布贾和包奇),对空气温度和土壤温度进行了多重分形去趋势波动分析和多重分形交叉相关分析。在一年的时间内,以 5 分钟的间隔测量了每月和每年的空气温度和土壤温度,并对多重分形性进行了分析。每月土壤温度的多重分形行为存在季节性依赖的证据。每月温度(空气和土壤)的多重分形程度高于年度温度。此外,还观察到空气和土壤温度的多重分形行为存在纬度依赖性。空气和土壤温度之间的交叉相关性也显示出多重分形性,在月度尺度上具有持久性,在年度尺度上具有反持久性。这项工作揭示了空气和土壤温度之间复杂的关系,研究结果将有助于对这两个变量进行建模。