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Featured researches published by N. Cueto.


Environmental Earth Sciences | 2018

Impact of salt and frost weathering on the physical and durability properties of travertines and carbonate tufas used as building material

David Benavente; J. Martínez-Martínez; N. Cueto; Salvador Ordóñez; M.A. García-del-Cura

This study aims to understand the effect of salt and frost crystallisation on the petrophysical and durability properties of representative types of travertine and carbonate tufas. Results demonstrate that the studied travertines and tufas exhibit a very high durability against salt and ice crystallisation cycles, compared to carbonates rocks with similar porosity values. The variation of the loss of mass, effective porosity, capillary absorption coefficient, ultrasonic wave velocity and attenuation, and compressive strength was scarce during weathering tests. The evolution of petrophysical properties was slightly more intense after 30 cycles of salt crystallisation than 100 cycles of freeze–thaw. Petrophysical and durability properties of the travertines and carbonate tufas depend on porosity fraction and on the manner in which the vuggy porosity is connected. In the travertine facies, vuggy macropores show little connection and can be considered as separate-vug porosity. Their addition to interparticle porosity increases effective porosity and reduces their mechanical strength but does not significantly increase capillary transport and the effectiveness of salt and ice action over the stone. On the contrary, in the carbonate tufas, vugs act as touching-vug pores, as capillary imbibition coefficients reveal. However, scanning electron microscopy displays that they underwent microcracking processes related mainly to both thermal stresses and/or ice and salt pressures. These microcracks present little connection, and they do not enhance noticeably the water flow or decrease the mechanical properties. These results are finally discussed in terms of a nonlinear decay pattern, which with long periods of apparent stability might be followed by rapid and catastrophic decay.


Environmental Earth Sciences | 2007

The influence of petrophysical properties on the salt weathering of porous building rocks

David Benavente; N. Cueto; J. Martínez-Martínez; M. A. García del Cura; Juan Carlos Cañaveras


Engineering Geology | 2007

Salt weathering in dual-porosity building dolostones

David Benavente; J. Martínez-Martínez; N. Cueto; M.A. García-del-Cura


Construction and Building Materials | 2012

Sedimentary structures and physical properties of travertine and carbonate tufa building stone

M. Ángeles García-del-Cura; David Benavente; J. Martínez-Martínez; N. Cueto


Engineering Geology | 2009

Rock fabric, pore geometry and mineralogy effects on water transport in fractured dolostones

N. Cueto; David Benavente; J. Martínez-Martínez; M.A. García-del-Cura


Engineering Geology | 2015

Predicting water permeability in sedimentary rocks from capillary imbibition and pore structure

David Benavente; Concepción Pla; N. Cueto; S. Galvañ; J. Martínez-Martínez; M.A. García-del-Cura; Salvador Ordóñez


Materiales De Construccion | 2014

A comparison of experimental methods for measuring water permeability of porous building rocks

S. Galvan; Concepción Pla; N. Cueto; J. Martínez-Martínez; M.A. García-del-Cura; David Benavente


Geogaceta | 2006

Influencia de la anisotropía en las propiedades hídricas de rocas. Estudio de rocas dolomíticas brechoides de la Cordillera Bética (España)

N. Cueto; David Benavente; María Ángeles García del Cura


Engineering Geology | 2016

Response to ENGEO7253 Discussion of: “Predicting water permeability in sedimentary rocks from capillary imbibition and pore structure” by D. Benavente et al., Engineering Geology (2015) [doi: 10.1016/j.enggeo.2015.06.003]

David Benavente; Concepción Pla; N. Cueto; S. Galvañ; J. Martínez-Martínez; M.A. García-del-Cura; Salvador Ordóñez


Geogaceta | 2009

Influencia de la petrografía en las propiedades petrofísicas y de durabilidad del Travertino Clásico: valoración de su anisotropía

David Benavente; Francisco Javier Medina Lapeña; Javier Martínez Martínez; N. Cueto; María Ángeles García del Cura

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M.A. García-del-Cura

Spanish National Research Council

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S. Galvañ

University of Alicante

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M. A. García del Cura

Spanish National Research Council

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