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Featured researches published by Marcello Niedda.


Journal of Hydrology and Hydromechanics | 2017

Subsurface flow and large-scale lateral saturated soil hydraulic conductivity in a Mediterranean hillslope with contrasting land uses

Mario Pirastru; V. Bagarello; Massimo Iovino; Roberto Marrosu; Mirko Castellini; Filippo Giadrossich; Marcello Niedda

Abstract The lateral saturated hydraulic conductivity, Ks,l, is the soil property that mostly governs subsurface flow in hillslopes. Determinations of Ks,l at the hillslope scale are expected to yield valuable information for interpreting and modeling hydrological processes since soil heterogeneities are functionally averaged in this case. However, these data are rare since the experiments are quite difficult and costly. In this investigation, that was carried out in Sardinia (Italy), large-scale determinations of Ks,l were done in two adjacent hillslopes covered by a Mediterranean maquis and grass, respectively, with the following objectives: i) to evaluate the effect of land use change on Ks,l, and ii) to compare estimates of Ks,l obtained under natural and artificial rainfall conditions. Higher Ks,l values were obtained under the maquis than in the grassed soil since the soil macropore network was better connected in the maquis soil. The lateral conductivity increased sharply close to the soil surface. The sharp increase of Ks,l started at a larger depth for the maquis soil than the grassed one. The Ks,l values estimated during artificial rainfall experiments agreed with those obtained during the natural rainfall periods. For the grassed site, it was possible to detect a stabilization of Ks,l in the upper soil layer, suggesting that flow transport capacity of the soil pore system did not increase indefinitely. This study highlighted the importance of the experimental determination of Ks,l at the hillslope scale for subsurface modeling, and also as a benchmark for developing appropriate sampling methodologies based on near-point estimation of Ks,l.


Soil & Tillage Research | 2015

IMPACT OF BIOCHAR ADDITION ON THE PHYSICAL AND HYDRAULIC PROPERTIES OF A CLAY SOIL

Mirko Castellini; Luisa Giglio; Marcello Niedda; A.D. Palumbo; Domenico Ventrella


Water Resources Research | 2004

Upscaling hydraulic conductivity by means of entropy of terrain curvature representation

Marcello Niedda


Estuarine Coastal and Shelf Science | 2007

Tidal, seiche and wind dynamics in a small lagoon in the Mediterranean Sea

Marcello Niedda; Mauro Greppi


Journal of Hydrology | 2014

Simulating the hydrological response of a closed catchment-lake system to recent climate and land-use changes in semi-arid Mediterranean environment

Marcello Niedda; Mario Pirastru; Mirko Castellini; Filippo Giadrossich


Soil Science Society of America Journal | 2016

Use of BEST Procedure to Assess Soil Physical Quality in the Baratz Lake Catchment (Sardinia, Italy)

Mirko Castellini; Massimo Iovino; Mario Pirastru; Marcello Niedda; V. Bagarello


Hydrological Processes | 2013

Hydrological processes of a closed catchment-lake system in a semi-arid Mediterranean environment

Marcello Niedda; Mario Pirastru


Journal of Hydrology | 2010

Field monitoring and dual permeability modelling of water flow through unsaturated calcareous rocks

Mario Pirastru; Marcello Niedda


Soil Use and Management | 2014

Temporal changes of soil physical quality under two residue management systems

Mirko Castellini; Marcello Niedda; Mario Pirastru; Domenico Ventrella


Ecological Engineering | 2016

Modeling bio-engineering traits of Jatropha curcas L.

Filippo Giadrossich; Denis Cohen; Massimiliano Schwarz; Giovanna Seddaiu; Nicla Contran; Marcello Lubino; Ofelia Andrea Valdés-Rodríguez; Marcello Niedda

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