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Use of a soil moisture network for drought monitoring in the Czech Republic

机译:利用土壤水分网络监测捷克共和国的干旱

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摘要

Since 2000, the network of stations that make up the Czech Hydrometeorological Institute (CHMI) has measured the soil moisture content at the 0- to 0.9-m layer using sensors placed within the natural soil profile under closely cropped grass cover. Using information from 8 years of continuous observation at seven stations throughout the Czech Republic, we verified the usefulness of the Soil Moisture Index (SMI). The SMI is a potentially useful index for calculating the water deficit in the Czech Republic and Central Europe. During this period, a statistically significant decrease in moisture content was detected, and negative SMI values predominated. There were frequent occurrences of flash drought, defined as a very rapid decline in soil moisture during a 3-week period. The CHMI can use SMI values below -3 in the Integrated Warning Service System. The routine calculation of SMI values can alert agricultural producers to the development of flash drought conditions and provide them with information regarding the effectiveness of recent rainfall events. An increase in soil moisture, in contrast, could serve as a warning sign for hydrology because it creates the preconditions for flooding. The complex study of soil humidity regimes is becoming more significant in connection with current global climatic change warnings in hydrological cycles.
机译:自2000年以来,组成捷克水文气象研究所(CHMI)的站点网络已使用传感器在紧密修剪的草皮下的自然土壤剖面内测量了0至0.9米层的土壤水分含量。利用在捷克共和国七个站点连续8年观察得到的信息,我们验证了土壤水分指数(SMI)的有用性。 SMI是计算捷克共和国和中欧缺水量的潜在有用指标。在此期间,检测到水分含量在统计上显着下降,并且SMI值为负。经常发生暴发干旱,这是指在三周内土壤水分迅速下降。 CHMI可以在Integrated Warning Service系统中使用低于-3的SMI值。 SMI值的常规计算可以提醒农业生产者干旱干旱的发生,并为他们提供有关近期降雨事件有效性的信息。相反,土壤湿度的增加可以作为水文学的预警信号,因为它创造了洪水的先决条件。结合当前全球水文循环中的气候变化预警,对土壤湿度状况的复杂研究变得越来越重要。

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  • 来源
    《Theoretical and applied climatology》 |2012年第2期|p.99-111|共13页
  • 作者单位

    Czech Hydrometeorological Institute, Doksany Observatory, 41182 Doksany, Czech Republic;

    Institute of Agrosystems and Bioclimatology, Mendel University in Brno, Zemedelska 1, 61300 Brno, Czech Republic;

    Institute of Agrosystems and Bioclimatology, Mendel University in Brno, Zemedelska 1, 61300 Brno, Czech Republic;

    Institute of Agrosystems and Bioclimatology, Mendel University in Brno, Zemedelska 1, 61300 Brno, Czech Republic;

    Czech Hydrometeorological Institute, Doksany Observatory, 41182 Doksany, Czech Republic;

    Department of Agroecology and Biometeorology, Czech University of Life Sciences Prague, Kamycka 129, 16500 Prague, Czech Republic;

    AS&Consulting, METEO Systems, 27601 Melnik, Czech Republic;

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