State of bare soil surface as a spring drought indicator
To evaluate soil moisture conditions in spring crops sowing term, data of bare soil surface state were used. Analysis included 32 stations throughout the Czech Republic. Number of days with dry soil surface in each year was compared with the average number of those days in the period 1961–2010 for a...
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Format: | Article |
Language: | English |
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Earth Science Institute, Slovak Academy of Sciences, Slovakia
2013-09-01
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Series: | Contributions to Geophysics and Geodesy |
Subjects: | |
Online Access: | https://journal.geo.sav.sk/cgg/article/view/94 |
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author | Bronislava MUŽÍKOVÁ Tomáš STŘEDA Hana STŘEDOVÁ |
author_facet | Bronislava MUŽÍKOVÁ Tomáš STŘEDA Hana STŘEDOVÁ |
author_sort | Bronislava MUŽÍKOVÁ |
collection | DOAJ |
description | To evaluate soil moisture conditions in spring crops sowing term, data of
bare soil surface state were used. Analysis included 32 stations throughout the Czech
Republic. Number of days with dry soil surface in each year was compared with the
average number of those days in the period 1961–2010 for a given station. The limits of
the individual categories were then determined for the period 1961–2010. The individual
values of the number of days with dry condition of soil in the early spring period were
compared with acquired 10th, 25th, 75th and 90th percentile average (1961–2010). More
days with dry soil are usually observed in April than in March. In both months there
are 11 days with this condition of soil altogether on average. Dry early spring occurred
mainly in 1961, 1968, 1974, 1981, 1990, 2002, 2003, 2007 and 2009. Wet spring occurred
in years 1965, 1970, 1980, 2001 and 2006 at almost all stations. There is a significant
correlation (p < 0.01) between number of days with dry condition of soil and elevation
(r = −0.51, n = 32). Average number of days with dry condition of soil surface in
March and April in the period 1961–2010 ranges from 5 to 21 days, which is similar to
the median values. Trend analysis did not produce conclusive results, but linear trend of
smoothing April data was significantly increased in most localities. The number of days
with dry condition of soil in the past decades has no significant upward or downward
trend. However four years (2002, 2003, 2007 and 2009) have been evaluated as dry and
two years (2001 and 2006) were evaluated as wet. An amount of extreme spring weather
increases. |
first_indexed | 2024-12-11T04:23:33Z |
format | Article |
id | doaj.art-ecb173a260f8484ab61240d40fcf8122 |
institution | Directory Open Access Journal |
issn | 1338-0540 |
language | English |
last_indexed | 2024-12-11T04:23:33Z |
publishDate | 2013-09-01 |
publisher | Earth Science Institute, Slovak Academy of Sciences, Slovakia |
record_format | Article |
series | Contributions to Geophysics and Geodesy |
spelling | doaj.art-ecb173a260f8484ab61240d40fcf81222022-12-22T01:21:03ZengEarth Science Institute, Slovak Academy of Sciences, SlovakiaContributions to Geophysics and Geodesy1338-05402013-09-0143319720710.2478/congeo-2013-001294State of bare soil surface as a spring drought indicatorBronislava MUŽÍKOVÁ0Tomáš STŘEDA1Hana STŘEDOVÁ2Department of Applied and Landscape Ecology, Mendel University in Brno, Czech RepublicDepartment of Crop Science, Breeding and Plant Medicine, Mendel University in Brno, Czech RepublicDepartment of Applied and Landscape Ecology, Mendel University in Brno, Czech RepublicTo evaluate soil moisture conditions in spring crops sowing term, data of bare soil surface state were used. Analysis included 32 stations throughout the Czech Republic. Number of days with dry soil surface in each year was compared with the average number of those days in the period 1961–2010 for a given station. The limits of the individual categories were then determined for the period 1961–2010. The individual values of the number of days with dry condition of soil in the early spring period were compared with acquired 10th, 25th, 75th and 90th percentile average (1961–2010). More days with dry soil are usually observed in April than in March. In both months there are 11 days with this condition of soil altogether on average. Dry early spring occurred mainly in 1961, 1968, 1974, 1981, 1990, 2002, 2003, 2007 and 2009. Wet spring occurred in years 1965, 1970, 1980, 2001 and 2006 at almost all stations. There is a significant correlation (p < 0.01) between number of days with dry condition of soil and elevation (r = −0.51, n = 32). Average number of days with dry condition of soil surface in March and April in the period 1961–2010 ranges from 5 to 21 days, which is similar to the median values. Trend analysis did not produce conclusive results, but linear trend of smoothing April data was significantly increased in most localities. The number of days with dry condition of soil in the past decades has no significant upward or downward trend. However four years (2002, 2003, 2007 and 2009) have been evaluated as dry and two years (2001 and 2006) were evaluated as wet. An amount of extreme spring weather increases.https://journal.geo.sav.sk/cgg/article/view/94drought, condition of soil, soil moisture, extremity |
spellingShingle | Bronislava MUŽÍKOVÁ Tomáš STŘEDA Hana STŘEDOVÁ State of bare soil surface as a spring drought indicator Contributions to Geophysics and Geodesy drought, condition of soil, soil moisture, extremity |
title | State of bare soil surface as a spring drought indicator |
title_full | State of bare soil surface as a spring drought indicator |
title_fullStr | State of bare soil surface as a spring drought indicator |
title_full_unstemmed | State of bare soil surface as a spring drought indicator |
title_short | State of bare soil surface as a spring drought indicator |
title_sort | state of bare soil surface as a spring drought indicator |
topic | drought, condition of soil, soil moisture, extremity |
url | https://journal.geo.sav.sk/cgg/article/view/94 |
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