Hydrogeochemical processes as environmental indicators in drip water: Study of the Cueva del Agua (Southern Spain)
Karst caves exhibit a wide range of hydrological and hydrochemical responses to infiltration events, due to their physical heterogeneity space and dynamic variability over time, and due to non-Gaussian inputs (rain) and outputs (discharge). This paper reviews different approaches of studying seepage...
Main Authors: | , , |
---|---|
Format: | Article |
Language: | English |
Published: |
University of South Florida Libraries
2008-01-01
|
Series: | International Journal of Speleology |
Subjects: | |
Online Access: | http://www.ijs.speleo.it/pdf/67.557.37_Fernandez-Cortes.Calaforra.Sanchez-Martos.pdf |
id |
doaj-1818a57bb47644cfb239e1439d2f4f8c |
---|---|
record_format |
Article |
spelling |
doaj-1818a57bb47644cfb239e1439d2f4f8c2021-05-02T01:43:31ZengUniversity of South Florida LibrariesInternational Journal of Speleology0392-66721827-806X2008-01-013714152Hydrogeochemical processes as environmental indicators in drip water: Study of the Cueva del Agua (Southern Spain)Francisco Sanchez-MartosJosé Maria CalaforraAngel Fernandez-CortèsKarst caves exhibit a wide range of hydrological and hydrochemical responses to infiltration events, due to their physical heterogeneity space and dynamic variability over time, and due to non-Gaussian inputs (rain) and outputs (discharge). This paper reviews different approaches of studying seepage water in caves, in order to understand the infiltration regimen in the non-saturated zone of karst areas. As an illustration, we describe a four-year study of the active carbonate-water system the Cueva del Agua (Granada, southern Spain) that automatically logs the discharge from a stalactite. The results indicate that: (1) the drip water regime is not seasonal, but is linked instead to slow infiltration. Sudden changes in drip water regime occur due to infiltration along preferential flow paths and the draining of water of supersaturated water from reserves in the microfissure and pore system; (2) the drip rate is not linear over time. When dripping is constant, barometric oscillation of the air is the principal factor causing a chaotic a drip flow regime. Over a short period of two to three days, a mean variation in air pressure inside the cave of 10 (±3.7) mbar causes a oscillation the drip rate of 0.5 (±0.2) mm/h. The increase air translates into an the relative thickness of the gaseous phase of the drip water at the cost of the aqueous phase, so leading to a reduction the drip rate from the stalactite. http://www.ijs.speleo.it/pdf/67.557.37_Fernandez-Cortes.Calaforra.Sanchez-Martos.pdfdrip dischargepiston effectspeleothemskarstcave |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Francisco Sanchez-Martos José Maria Calaforra Angel Fernandez-Cortès |
spellingShingle |
Francisco Sanchez-Martos José Maria Calaforra Angel Fernandez-Cortès Hydrogeochemical processes as environmental indicators in drip water: Study of the Cueva del Agua (Southern Spain) International Journal of Speleology drip discharge piston effect speleothems karst cave |
author_facet |
Francisco Sanchez-Martos José Maria Calaforra Angel Fernandez-Cortès |
author_sort |
Francisco Sanchez-Martos |
title |
Hydrogeochemical processes as environmental indicators in drip water: Study of the Cueva del Agua (Southern Spain) |
title_short |
Hydrogeochemical processes as environmental indicators in drip water: Study of the Cueva del Agua (Southern Spain) |
title_full |
Hydrogeochemical processes as environmental indicators in drip water: Study of the Cueva del Agua (Southern Spain) |
title_fullStr |
Hydrogeochemical processes as environmental indicators in drip water: Study of the Cueva del Agua (Southern Spain) |
title_full_unstemmed |
Hydrogeochemical processes as environmental indicators in drip water: Study of the Cueva del Agua (Southern Spain) |
title_sort |
hydrogeochemical processes as environmental indicators in drip water: study of the cueva del agua (southern spain) |
publisher |
University of South Florida Libraries |
series |
International Journal of Speleology |
issn |
0392-6672 1827-806X |
publishDate |
2008-01-01 |
description |
Karst caves exhibit a wide range of hydrological and hydrochemical responses to infiltration events, due to their physical heterogeneity space and dynamic variability over time, and due to non-Gaussian inputs (rain) and outputs (discharge). This paper reviews different approaches of studying seepage water in caves, in order to understand the infiltration regimen in the non-saturated zone of karst areas. As an illustration, we describe a four-year study of the active carbonate-water system the Cueva del Agua (Granada, southern Spain) that automatically logs the discharge from a stalactite. The results indicate that: (1) the drip water regime is not seasonal, but is linked instead to slow infiltration. Sudden changes in drip water regime occur due to infiltration along preferential flow paths and the draining of water of supersaturated water from reserves in the microfissure and pore system; (2) the drip rate is not linear over time. When dripping is constant, barometric oscillation of the air is the principal factor causing a chaotic a drip flow regime. Over a short period of two to three days, a mean variation in air pressure inside the cave of 10 (±3.7) mbar causes a oscillation the drip rate of 0.5 (±0.2) mm/h. The increase air translates into an the relative thickness of the gaseous phase of the drip water at the cost of the aqueous phase, so leading to a reduction the drip rate from the stalactite. |
topic |
drip discharge piston effect speleothems karst cave |
url |
http://www.ijs.speleo.it/pdf/67.557.37_Fernandez-Cortes.Calaforra.Sanchez-Martos.pdf |
work_keys_str_mv |
AT franciscosanchezmartos hydrogeochemicalprocessesasenvironmentalindicatorsindripwaterstudyofthecuevadelaguasouthernspain AT josemariacalaforra hydrogeochemicalprocessesasenvironmentalindicatorsindripwaterstudyofthecuevadelaguasouthernspain AT angelfernandezcortes hydrogeochemicalprocessesasenvironmentalindicatorsindripwaterstudyofthecuevadelaguasouthernspain |
_version_ |
1721496351453216768 |