846 resultados para Vertebral fracture


Relevância:

20.00% 20.00%

Publicador:

Resumo:

The Clarion-Clipperton Fracture Zone (CCFZ) in the Pacific Ocean is characterized by organic carbon-starved sediments and meter-scale oxygen penetration into the sediment. Furthermore, numerous seamounts occur throughout its deep-sea plain, which may serve as conduits for low-temperature hydrothermal circulation of seawater through the oceanic crust. Recent studies in deep-sea environments of the Pacific and Atlantic Oceans have suggested and presented evidence of an exchange of dissolved constituents between the seawater flowing in the basaltic crust and the pore water of the overlying sediments. Through high-resolution pore-water oxygen and nutrient measurements, we examined fluxes and geochemical interactions between the seamount basaltic basement and pore waters of the overlying sediments at three sites located on a radial transect from the foot of Teddy Bare, a small seamount in the CCFZ. At three sites, located 1000, 700 and 400 m away from the foot of the seamount, we found that oxygen concentrations initially decrease with sediment depth but start to increase at depths of 3 and 7 m towards the basaltic basement. NO32- concentrations mirror the oxygen concentration profiles, as they increase with sediment depth but decrease towards the basement. We performed transport reaction modeling and determined at one site the 87Sr/86Sr ratio of the pore water and the bottom water overlying the sediments, which indicated that the 87Sr/86Sr ratio of the pore water at the bottom of the sediment column is similar to the seawater Transport-reaction modeling revealed that (1) the diffusive flux of oxygen from the basaltic basement outpaces the oxygen consumption through organic matter oxidation and nitrification in the basal sediments and (2) the nutrient exchange between the sediment and the underlying basaltic crust occurs at orders-of-magnitude lower rates than between the upper sediment and the overlying bottom water. Our results suggest an upward diffusion of oxygen from seawater circulating within the seamount crust into the overlying basal sediments. The oxygen profiles presented here represent the first of their kind ever measured in the Pacific Ocean, as they indicate an upward flux of molecular oxygen from a basaltic aquifer, something that has so far only been documented - at one other location worldwide - the North Pond site in the Atlantic Ocean. We show that the diffusion of oxygen from the seamount basaltic basement into the overlying pore waters affects the preservation of organic compounds and helps to maintain a completely oxygenated sedimentary column at all 3 sites near the seamount.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

The critical fracture toughness is a material parameter describing the resistance of a cracked body to further crack extension. It is an important parameter to simulate and predict the break-up behaviour of ice shelves from calving of single icebergs to the disintegration of entire ice shelves over a wide range of length scales. The fracture toughness values are calculated with equations that are derived from an elastic stress analysis. Additionally, an X-ray computer tomography (CT scanner) was used to identify the density as a function of depth. The critical fracture toughness of 91 Antarctic inland ice samples with densities between 840 to 870 kg/m**3 has been determined by applying a four-point-bending technique on single edge v-notched beam samples. The examined ice core was drilled 70m north of Kohnen Station, Dronnning Maud Land (75°00' S, 00°04' E, 2882 m).

Relevância:

20.00% 20.00%

Publicador:

Resumo:

Many of the material models most frequently used for the numerical simulation of the behavior of concrete when subjected to high strain rates have been originally developed for the simulation of ballistic impact. Therefore, they are plasticity-based models in which the compressive behavior is modeled in a complex way, while their tensile failure criterion is of a rather simpler nature. As concrete elements usually fail in tensión when subjected to blast loading, available concrete material models for high strain rates may not represent accurately their real behavior. In this research work an experimental program of reinforced concrete fíat elements subjected to blast load is presented. Altogether four detonation tests are conducted, in which 12 slabs of two different concrete types are subjected to the same blast load. The results of the experimental program are then used for the development and adjustment of numerical tools needed in the modeling of concrete elements subjected to blast.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

One of the common pathologies of brickwork masonry structural elements and walls is the cracking associated with the differential settlements and/or excessive deflections of the slabs along the life of the structure. The scarce capacity of the masonry in order to accompany the structural elements that surround it, such as floors, beams or foundations, in their movements makes the brickwork masonry to be an element that frequently presents this kind of problem. This problem is a fracture problem, where the wall is cracked under mixed mode fracture: tensile and shear stresses combination, under static loading. Consequently, it is necessary to advance in the simulation and prediction of brickwork masonry mechanical behaviour under tensile and shear loading. The quasi-brittle behaviour of the brickwork masonry can be studied using the cohesive crack model whose application to other quasibrittle materials like concrete has traditionally provided very satisfactory results.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

La riqueza de propiedades y posibilidades de movimiento que se derivan de la columna vertebral tomadas en su conjunto son las causas que me han estimulado, para intentar buscar más respuestas, a todas mis actuales incógnitas, que en este presente trabajo pretendo contestar, con los medios de que dispongo, y en la medida que mejor pueda. La tarea, sé de antemano que no es fácil, y no menos corta, debida a la aparente complejidad, pero creo que apoyándome en una apropiada metodología, y centrándome, única y exclusivamente en los puntos que me interesan, puedo lograr los pasos que me lleven a los objetivos finales que persigo. Después de recopilar todos los datos posibles de anatomía, que hacían referencia al raquis, me llevó un cierto tiempo, hasta llegar al ordenamiento de todas las ideas que había adquirido. Esto me hizo llegar a la conclusión de que el planteamiento más adecuado, sería, por un lado un estudio anatómico desde un punto de vista descriptivo de las diferentes partes y elementos que constituyen el eje del cuerpo, para por otro lado y posteriormente, entender mejor las distintas propiedades y funciones mecánicas de este eje raquídeo. Para realizar este trabajo hemos consultado y estudiado numerosas publicaciones de autores, anatomistas prestigiosos tanto clásicos como modernos, tratando de condensar sus teorías o sus exposiciones, que hacen referencia al tema elegido. Todo cuanto queda resumido creemos que contiene interés para cualquier profesor de Educación Física y Deportes. Mi intención no ha sido nunca sacar unas conclusiones prácticas nuevas no descubiertas; y si el de haber empleado un medio o camino a seguir que yo creo conveniente aplicarlo para obtener los datos que persigo, de este raquis tomado en conjunto. Precisamente por este enfoque de abordar el tema en conjunto, he tenido que hacer continuas citas entre los diferentes puntos del sumario,puesto que es muy difícil separar los diferentes aspectos o puntos tomados en cada apartado debido a su constante interrelación. El principal aspecto de la columna vertebral que estudiaremos es su increíble y contradictoria, doble función estótico-dinámica. Intentaremos pues en el contenido de este trabajo, adentrarnos lo más posible en el estudio de esta doble función para su mejor comprensión. Con el deseo de exponer el tema de una manera lo más racional posible, he dividido el estudio en seis capítulos. El primero en el que nos encontramos, es una breve introducción y visión en conjunto del tema. En el segundo hago una síntesis de la formación y del desarrollo de la columna vertebral, que creo de sumo interés debido a su tardío y largo proceso de osificación y formación. En el tercer capítulo realizo una descripción anatómica de todo el raquis que creo de absoluta necesidad para la comprensión de los siguientes apartados. Posteriormente se describe el raquis en conjunto, , funciones, curvaturas, movilidad, así como un breve análisis de movimientos. El quinto capítulo estudia la postura muy atrayente a mi modo de ver, derivada de la evolución de la estación bípeda, asi como algunas consideraciones muy generales de las lesiones de columna debido a su numerosa, cuantía, y por último, hago una síntesis general asi como unas conclusiones finales. Para finalizar quiero manifestar mi profundo agradecimiento al Profesor de Anatomía Dr. Anitua Solano por su entera ayuda, sin su dirección no hubiera sido posible la realización de este trabajo.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

Based on our needs, that is to say, through precise simulation of the impact phenomena that may occur inside a jet engine turbine with an explicit non-linear finite element code, four new material models are postulated. Each one of is calibrated for four high-performance alloys that can be encountered in a modern jet engine. A new uncoupled material model for high strain and ballistic is proposed. Based on a Johnson-Cook type model, the proposed formulation introduces the effect of the third deviatoric invariant by means of three different Lode angle dependent functions. The Lode dependent functions are added to both plasticity and failure models. The postulated model is calibrated for a 6061-T651 aluminium alloy with data taken from the literature. The fracture pattern predictability of the JCX material model is shown performing numerical simulations of various quasi-static and dynamic tests. As an extension of the above-mentioned model, a modification in the thermal softening behaviour due to phase transformation temperatures is developed (JCXt). Additionally, a Lode angle dependent flow stress is defined. Analysing the phase diagram and high temperature tests performed, phase transformation temperatures of the FV535 stainless steel are determined. The postulated material model constants for the FV535 stainless steel are calibrated. A coupled elastoplastic-damage material model for high strain and ballistic applications is presented (JCXd). A Lode angle dependent function is added to the equivalent plastic strain to failure definition of the Johnson-Cook failure criterion. The weakening in the elastic law and in the Johnson-Cook type constitutive relation implicitly introduces the Lode angle dependency in the elastoplastic behaviour. The material model is calibrated for precipitation hardened Inconel 718 nickel-base superalloy. The combination of a Lode angle dependent failure criterion with weakened constitutive equations is proven to predict fracture patterns of the mechanical tests performed and provide reliable results. A transversely isotropic material model for directionally solidified alloys is presented. The proposed yield function is based a single linear transformation of the stress tensor. The linear operator weighs the degree of anisotropy of the yield function. The elastic behaviour, as well as the hardening, are considered isotropic. To model the hardening, a Johnson-Cook type relation is adopted. A material vector is included in the model implementation. The failure is modelled with the Cockroft-Latham failure criterion. The material vector allows orienting the reference orientation in any other that the user may need. The model is calibrated for the MAR-M 247 directionally solidified nickel-base superalloy.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

This paper proposes a repairability index for damage assessment in reinforced concrete structural members. The procedure discussed in this paper differs from the standard methods in two aspects: the structural and damage analyses are coupled and it is based on the concepts of fracture and continuum damage mechanics. The relationship between the repairability index and the well-known Park and Ang index is shown in some particular cases.

Relevância:

20.00% 20.00%

Publicador:

Resumo:

The end-notched flexure (ENF) test calculates the value of mode II fracture energy in adhesive bonding between the substrates of same nature. Traditional methods of calculating fracture energy in the ENF test are not suitable in cases where the thickness of the adhesive is non-negligible compared with adherent thicknesses. To address this issue, a specific methodology for calculating mode II fracture energy has been proposed in this paper. To illustrate the applicability of the proposed method, the fracture energy was calculated by the ENF test for adhesive bonds between aluminium and a composite material, which considered two different types of adhesive (epoxy and polyurethane) and various surface treatments. The proposed calculation model provides higher values of fracture energy than those obtained from the simplified models that consider the adhesive thickness to be zero, supporting the conclusion that the calculation of mode II fracture energy for adhesives with non-negligible thickness relative to their adherents should be based on mathematical models, such as the method proposed in this paper, that incorporate the influence of this thickness.