7 resultados para Foundation design

em Universidad Politécnica de Madrid


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Despite the growth of the offshore wind industry, there are currently doubts relating to the design of wind facilities in the sea. This paper expounds current, already identified structural uncertainties: problems for soil characterization and transition piece (TP) design. This document also introduces new doubts or issues to be researched in the near future in this field (wave theory, scour process, wave load actions, scale difficulty, etc.), not as yet identified due to the scarce experience in the offshore wind industry. With this in mind, technical offshore wind standards related to foundation design have been reviewed.

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Este proyecto tiene por objetivo la realización de un análisis comparativo de la normativa española existente para el cálculo de la carga de hundimiento de cimentaciones mediante pilotes, viendo el contenido de cada una de ellas y aplicándolo a un caso práctico. Inicialmente se realiza un planteamiento general del modo de cálculo de la carga de hundimiento de los pilotes desde el punto de vista estático. A continuación se recoge la formulación existente en el Código Técnico de la Edificación (CTE), en las Recomendaciones para Obras Marítimas y Portuarios (ROM 05-05) y en la Guía de Cimentaciones en Obras de Carretera (GCOC) viendo de donde se extraen las fórmulas empleadas en ellas. Para pasar a realizar un análisis comparativo de ellas con la ayuda de distintos gráficos y viendo la relación que presentan unos códigos con otros tanto para suelos granulares como cohesivos y pilotes hincados y excavados, que es lo que distinguen los tres códigos generalmente. Por último, se realiza un análisis comparativo de los resultados obtenidos para la cimentación de tres viaductos de la autovía Noroeste de Murcia realizando un análisis económico de esta cimentación. ABSTRACT The aim of this project is to develop a comparative analysis of the actual Spanish regulations for the calculation of sinking’s load of foundation design based on timber piles, observing the contents of each and every one of them an applying it to a real and practical situation. To begin with, a general proposal is made from calculation the sinking load of the timber piles from the static point of view. Next, the actual formulation is gathering in “Código Técnico de la Edificación” (CTE), “Recomendaciones para Obras Marítimas y Portuarias” and “Guía de Cimentaciones en Obras de Carretera”, observing where the applied formulas are calculated from. Thereupon, a coparativeanalysis of them is carry out with the help of different graphics and facing the connections from some codes to anothers, not only for granular but for cohesive surface, and for drilling and digging out piles, that’s what generally distinguishes among for three codes. Finally, a comparative analysis of obtained results is carry out for the foundation of the three viaducts of Murcia’s NorthWest motorway, accomplishing economical analysis of this foundation.

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Permanent displacements of a gas turbine founded on a fine, poorly graded, and medium density sand are studied. The amplitudes and modes of vibration are computed using Barkan´s formulation, and the “High-Cycle Accumulation” (HCA) model is employed to account for accumulated deformations due to the high number of cycles. The methodology is simple: it can be easily incorporated into standard mathematical software, and HCA model parameters can be estimated based on granulometry and index properties. Special attention is devoted to ‘transient’ situations at equipment´s start-up, during which a range of frequencies – including frequencies that could be similar to the natural frequencies of the ground – is traversed. Results show that such transient situations could be more restrictive than stationary situations corresponding to normal operation. Therefore, checking the stationary situation only might not be enough, and studying the influence of transient situations on computed permanent displacements is needed to produce a proper foundation design

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This paper explains a procedure for the choice of ballast modules used for the design of direct continuous foundation in karst terrain. The presence of dangerous cavities is introduced in this procedure thereby evaluating risk failure. It also provides pertinent guidelines to direct the geotechnical survey of the terrain.

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Offshore wind industry has exponentially grown in the last years. Despite this growth, there are still many uncertainties in this field. This paper analyzes some current uncertainties in the offshore wind market, with the aim of going one step further in the development of this sector. To do this, some already identified uncertainties compromising offshore wind farm structural design have been identified and described in the paper. Examples of these identified uncertainties are the design of the transition piece and the difficulties for the soil properties characterization. Furthermore, this paper deals with other uncertainties not identified yet due to the limited experience in the sector. To do that, current and most used offshore wind standards and recommendations related to the design of foundation and support structures (IEC 61400-1, 2005; IEC 61400-3, 2009; DNV-OS-J101, Design of Offshore Wind Turbine, 2013 and Rules and Guidelines Germanischer Lloyd, WindEnergie, 2005) have been analyzed. These new identified uncertainties are related to the lifetime and return period, loads combination, scour phenomenon and its protection, Morison e Froude Krilov and diffraction regimes, wave theory, different scale and liquefaction. In fact, there are a lot of improvements to make in this field. Some of them are mentioned in this paper, but the future experience in the matter will make it possible to detect more issues to be solved and improved.

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This paper explains a procedure for the choice of ballast modules used for the design of direct continuous foundation in karst terrain. The presence of dangerous cavities is introduced in this procedure thereby evaluating risk failure. It also provides pertinent guidelines to direct the geotechnical survey of the terrain.

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The authors present a very interesting criterion for choosing a rectangular foundation.The writers should like to point out that the obtention of minimum area can be reduced to the problem of finding the minimum of x*+y*, subjected to the condition x*.y*=k2 whose solution is evidently x*=y*=k