The performance of managed artificial recharge (MAR) facilities by means of surface ponds (SP) is controlled by the temporal evolution of the global infiltration capacity I c of topsoils. Cost-effective maintenance operations that aim to maintain controlled infiltration values during the activity of the SP require the full knowledge of the spatio-temporal variability of I c. This task is deemed uncertain. The natural reduction in time of I c depends on complex physical, biological and chemical reactions that clog the soil pores and has been observed to decay exponentially to an asymptotic non-zero value. Moreover, the relative influence of single clogging processes depend on some initial parameters of the soil, such as the initial infiltrat...
Many infiltration models rely on an effective hydraulic conductivity parameter (Ke) which is often d...
Infiltration rates into field soils have a large variability, and a statistical value that represent...
It is useful to estimate infiltration rates and potentials for several reasons. Information about in...
The performance of managed artificial recharge (MAR) facilities by means of surface ponds (SP) is co...
The efficiency of artificial surface ponds (SPs) for managed aquifer recharge (MAR) is mostly contro...
Aquifer artificial recharge from surface infiltration ponds is often conducted to replenish depleted...
Many urbanized areas in the world are using artificial recharge basins (ARB) as an efficient solutio...
Natural groundwater recharge is inherently difficult to quantify and predict, largely because it com...
In semi-arid ecoregions of temperate zones, focused snowmelt water infiltration in topographic depre...
Infiltration capacity is the key parameter in an artificial recharge operation site. Infiltration ca...
When surface water infiltrates soil, the fine soil particles carried in water gradually clog soil po...
Abstract Managed aquifer recharge (MAR) represents a promising technique to cope with increasing wat...
ABSTRACT In this paper, infiltration distribution rates were evaluated on areas affected by accelera...
Infiltration is the process whereby water enters soil through the surface. This can be a naturally o...
Assessment of the stability of embankment and cut slopes over the life of a project are critical iss...
Many infiltration models rely on an effective hydraulic conductivity parameter (Ke) which is often d...
Infiltration rates into field soils have a large variability, and a statistical value that represent...
It is useful to estimate infiltration rates and potentials for several reasons. Information about in...
The performance of managed artificial recharge (MAR) facilities by means of surface ponds (SP) is co...
The efficiency of artificial surface ponds (SPs) for managed aquifer recharge (MAR) is mostly contro...
Aquifer artificial recharge from surface infiltration ponds is often conducted to replenish depleted...
Many urbanized areas in the world are using artificial recharge basins (ARB) as an efficient solutio...
Natural groundwater recharge is inherently difficult to quantify and predict, largely because it com...
In semi-arid ecoregions of temperate zones, focused snowmelt water infiltration in topographic depre...
Infiltration capacity is the key parameter in an artificial recharge operation site. Infiltration ca...
When surface water infiltrates soil, the fine soil particles carried in water gradually clog soil po...
Abstract Managed aquifer recharge (MAR) represents a promising technique to cope with increasing wat...
ABSTRACT In this paper, infiltration distribution rates were evaluated on areas affected by accelera...
Infiltration is the process whereby water enters soil through the surface. This can be a naturally o...
Assessment of the stability of embankment and cut slopes over the life of a project are critical iss...
Many infiltration models rely on an effective hydraulic conductivity parameter (Ke) which is often d...
Infiltration rates into field soils have a large variability, and a statistical value that represent...
It is useful to estimate infiltration rates and potentials for several reasons. Information about in...