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Dive into the research topics where Marcos Jesús Pantaleón Prieto is active.

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Featured researches published by Marcos Jesús Pantaleón Prieto.


Structural Engineering International | 2009

Escaleritas Viaduct, Las Palmas de Gran Canaria, Spain

Marcos Jesús Pantaleón Prieto; Oscar Ramón Ramos Gutiérrez; Guillermo Ortega Carreras; José Manuel Martínez García

The Escaleritas Viaduct (Las Palmas de Gran Canaria, Spain) is an urban structure that links the districts of Escaleritas and La Feria, and provides this ever-growing area with a great spatial sense. The viaduct has a length of 220 m, divided in four spans of 100 m (the cable-stayed span), 42 m, 42 m and 36 m, respectively. The steel-concrete composite box section of the deck is supported by the piers in a single bearing point, creating a torsion span of 220 m. A 36 m high steel pylon connects the front stays supporting the deck (along its longitudinal axis) with two groups of retention stays, which are anchored to two retention blocks placed behind the abutment 1. The deck bridge was divided into segments; these segments were lifted with cranes and assembled over temporary piers, which were removed after the tensioning of the stays. A three-dimensional (3D) beam model, taking into account the construction process, was considered for the general calculation of the bridge. The most detailed analysis of the deck and the pylon was carried out by means of a shell Finite Element Model (FEM). Finally, the tensioning project is described. The Escaleritas Viaduct project arises from the need to join the districts of Escaleritas and La Feria del Atlantico. The Las Palmas de Gran Canaria City Council and the Gran Canaria Island Council invited tenders to provide the necessary connection to cross the La Ballena gully, a large depression separating the districts that is at present a continually expanding urban park. Among the other infrastructure already present, the main obstacle was the artificial tunnel that intersects the horizontal alignment of the new road at a 51 ° skew angle. For this reason, the larger viaduct span needed to be just at the start of the bridge. The position of the abutments was almost fixed, because the new road will be the continuation of the existing streets at both sides of the gully. Consequently, the asymmetric cable-stayed solution for the main span began to take shape. This solution allowed a span distribution of 100, 42, 42 and 36 m, optimizing the transverse visibility of the viaduct. Moreover, a single typology having a minimum uniform depth along the whole viaduct resulted in a better economic performance of the decks cross-section (Fig. 1). The bridge has a constant slope of 1,5 % in the vertical alignment, whereas the plan view shows that the main span lies inside a straight horizontal alignment, followed by a leftward circular alignment of 450 m radius (Fig. 2).


Archive | 2010

Floating platform for extracting wind energy

Marcos Jesús Pantaleón Prieto; Oscar Ramon Ramos Guiterrez; Miguel Ángel Gutiérrez Martínez


Hormigón y Acero | 2016

Aspectos generales y casos concretos de los trabajos de supervisión estructural del proceso constructivo y medios auxiliares del Puente de la Constitución de 1812 sobre la Bahía de Cádiz

Alejandro Castillo Linares; Oscar Ramón Ramos Gutiérrez; Manuel Angel Díaz García; Marcos Jesús Pantaleón Prieto


Hormigón y Acero | 2011

Viaducto sobre Rego das Lamas

Julio Rodríguez Miñano; Marcos Jesús Pantaleón Prieto; Oscar Ramón Ramos Gutiérrez; José Manuel Martínez García; Guillermo Ortega Carreras


Archive | 2010

Mástil meteorológico marino para medida de recurso eólico

Marcos Jesús Pantaleón Prieto; Juan Echevarría Cuenca; Juan José González Méndez; Ángel Piedra Sisniega; Oscar Ramón Ramos Gutiérrez; Miguel Ángel Gutiérrez Martínez; Manuel Angel Díaz García; Marian López Mesas; Luis Santiago Sánchez Martínez; Mikel Lasa Morán; Iñigo Losada Rodríguez; Raúl Guanche García; César Vidal Pascual; Raúl Medina Santamaría


Archive | 2016

Realizaciones y Proyectos Viaducto de Montabliz Montabliz Viaduct

Roberto Villegas Gómez; Marcos Jesús Pantaleón Prieto; Roberto Revilla Angulo; Patricia Olazábal Herrero


プレストレストコンクリート = Journal of prestressed concrete, Japan | 2015

海外文献 グアダロルセ川とA-92号,道路を跨ぐマラガの高架橋,スペイン

Oscar Ramón Ramos Gutiérrez; Marcos Jesús Pantaleón Prieto; Guillermo Ortega Carreras


Revista de Obras Públicas: Organo profesional de los ingenieros de caminos, canales y puertos | 2015

Los puentes arco metálicos modernos

Marcos Jesús Pantaleón Prieto; Oscar Ramón Ramos Gutiérrez


Hormigón y Acero | 2015

Pasarela en la Ronda de la Bahía de Santander

Roberto Revilla Angulo; Patricia Olazábal Herrero; Marcos Jesús Pantaleón Prieto


Archive | 2011

Weather floating platform.

Marcos Jesús Pantaleón Prieto; Manuel Angel Díaz García; Miguel Ángel Gutiérrez Martínez; Oscar Ramón Ramos Gutiérrez; Ángel Piedra Sisniega; Juan Echevarría Cuenca; Israel Pinto Grijuela; María Ángeles López Mesas; Rodrigo Sampedro Gutiérrez; Iñigo Losada Rodríguez; Raúl Guanche García; César Vidal Pascual; Raúl Medina Santamaría

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