Heavy rainfalls in Bulgaria due to solar activity and their possible influence on landslides

Y. Chapanov, M. Atanasova, H. Nikolov
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引用次数: 1

Abstract

Summary The solar activity cycles affect various parameters of surface areas, including rains, snow covers, river streamflows and other hydrological cycles. These processes are due mainly to the total solar irradiance variations, followed by weather and climate changes. The interconnection between the solar cycles and decadal changes of rainfalls over Bulgaria is investigated by means of reconstructed Total Solar Irradiance TSI, precipitation from meteorological stations Sofia, Varna, and Palmer Drought Severity Index (PDSI) for the period 1899–2015. The decadal oscillations of precipitation and TSI with periods corresponding to the sunspots (11 years), solar magnetic cycle (22 years), equatorial solar asymmetry (45 years), Gleissberg cycle (70–100 years) and their harmonics are compared and analyzed. Models of decadal variations of PDSI and precipitation, based on solar cycles and harmonics, are created. The periods with rainfall and PDSI maxima are calculated on a century time span and a forecast of landslides is determined.
由于太阳活动和它们可能对滑坡的影响,保加利亚暴雨
太阳活动周期影响地表的各种参数,包括降雨、积雪、河流流量和其他水文循环。这些过程主要是由于太阳总辐照度的变化,其次是天气和气候的变化。利用重建的总太阳辐照度TSI、索非亚、瓦尔纳气象站的降水和帕尔默干旱严重指数(PDSI),研究了1899-2015年期间保加利亚的太阳周期与降雨的年代际变化之间的相互关系。对比分析了降水和TSI与太阳黑子(11 a)、太阳磁周期(22 a)、太阳赤道不对称(45 a)、Gleissberg周期(70 ~ 100 a)对应的年代际振荡及其谐波。基于太阳周期和谐波,建立了PDSI和降水的年代际变化模型。在一个世纪的时间跨度内计算降雨量和PDSI最大值的周期,并确定滑坡的预测。
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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