Multiple Coordinate Translations to Forecast Local Seasonal Changes with Daily Details

Y. Kolokolov, A. Monovskaya
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Abstract

The paper demonstrates novel abilities of computer aided processing of meteorological temperature observations to analyze seasonal changes in local climate dynamics. These abilities are connected with the following two missions: to escape traditional losses of the existing information due to the consecutive averaging and to get more necessary information at the expense of restored evolutionary and regulatory constituents in the dynamics. The restoration passes through multiple coordinate translations from weather terms to the climate ones and vice versa, where nonlinear nonstationary features of temperature time series are taken into the consideration but not ignored. Physical meaning of these translations originates from conceptual models of the regulatory theory of local climate dynamics. Then it seems to be promising to direct IT power towards the following problem statement of sustainable development: to determine geographical locations, where seasonally-dependent productions could be best developed with natural conditions in middle-term outlook.
多坐标转换预测当地季节变化与每日细节
本文论证了利用计算机辅助处理气象温度观测资料分析局地气候动力学季节变化的新能力。这些能力与以下两个任务有关:避免由于连续平均而导致的现有信息的传统损失,并以恢复动态中的进化和调节成分为代价获得更多必要的信息。恢复过程需要多次从天气项到气候项的坐标转换,反之亦然,其中考虑了温度时间序列的非线性非平稳特征,但不能忽略。这些翻译的物理意义源于局部气候动力学调节理论的概念模型。那么,似乎有希望将信息技术力量引向可持续发展的以下问题陈述:确定地理位置,在中期前景中,在自然条件下,季节性依赖的生产可以得到最好的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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