4 resultados para Lisbon and Tagus Valley region
em Repositório Científico da Universidade de Évora - Portugal
Resumo:
O relatório de conclusão de Mestrado Integrado em Gestão e Valorização do Património Histórico e Cultural aqui apresentado tem como principal objectivo a descrição e análise das várias actividades realizadas na Direcção Regional de Cultura de Lisboa e Vale do Tejo. Cada actividade descrita neste relatório, esta ligada a diferentes áreas de actuação da Direcção Regional de Cultura de Lisboa e Vale do Tejo. Todos eles foram realizados por mim durante os sete meses de estágio. As várias actividades estão divididas em três pontos: estudo, classificação e reabilitação do património. Este relatório tem inicialmente uma análise sobre gestão e valorização do património, procurando contextualizar as várias actividades desempenhadas durante o estágio. Essa analise mostra a evolução do conceito de património e as apolíticas para a sua protecção e valorização, destacando o contributo do património na evolução económica e cultural dos centros urbanos. ABSTRACT; Report done for the Master Degree in Management and Valorisation of Cultural and Historic Heritage. The report main purpose is to describe and to analyse the internship activities in the Regional Direction of Culture of Lisbon and Tagus Valley, carried out in seven months. The report is structure in three main points: study, classification, and heritage rehabilitation. Begins with the history of the heritage concept since the beginning of the 20th century and follows with the study of the evolution of the protection and valorization politics in Portugal, standing out the contribution of the heritage in the economic and cultural improvement in urban centres. Contextualization of the several activities performed in the internship.
Resumo:
In this study, we considered earthquakes with a maximum observed intensity (MOI) Io≥V that occurred throughout the Portuguese mainland and its adjacent Atlantic region to produce the map of maximum intensities of Portugal. This map is based on a wide variety of historical and recent sources, including 175 earthquakes, over the period of 1300–2014. This MOI map allows the regions of high, medium, and low levels of seismic hazard to be highlighted. The entirety of Portugal has been affected by major seismic events, some of which have caused serious damage. In addition, offshore earthquakes have had significant impacts on the coastal cities located in the central and southern regions of the country. Because the southern region of mainland Portugal is more active than the northern region, the largest concentrations of events with Io≥VI are in the southern region, especially on the mainland near the city of Évora, in the Lisbon region, in the Lower Tagus Valley region, and along the Algarve coast, especially in the southwest region in Cape of São Vicente and the Gorringe Bank.
Resumo:
During its history, several significant earthquakes have shaken the Lower Tagus Valley (Portugal). These earthquakes were destructive; some strong earthquakes were produced by large ruptures in offshore structures located southwest of the Portuguese coastline, and other moderate earthquakes were produced by local faults. In recent years, several studies have successfully obtained strong-ground motion syntheses for the Lower Tagus Valley using the finite difference method. To confirm the velocity model of this sedimentary basin obtained from geophysical and geological data, we analysed the ambient seismic noise measurements by applying the horizontal to vertical spectral ratio (HVSR) method. This study reveals the dependence of the frequency and amplitude of the low-frequency (HVSR) peaks (0.2–2 Hz) on the sediment thickness. We have obtained the depth of the Cenozoic basement along a profile transversal to the basin by the inversion of these ratios, imposing constraints from seismic reflection, boreholes, seismic sounding and gravimetric and magnetic potentials. This technique enables us to improve the existing three-dimensional model of the Lower Tagus Valley structure. The improved model will be decisive for the improvement of strong motion predictions in the earthquake hazard analysis of this highly populated basin. The methodology discussed can be applied to any other sedimentary basin.
Resumo:
Ao longo de sua história a região do Vale Inferior do Tejo VIT foi abalada por vários sismos consideravelmente destrutivas, tendo alguns deles produzido significativas deformações nas estruturas marítimas localizadas no litoral a sudoeste do território Português; outros, moderados, foram produzidos por fontes locais, como os de 1344, 1531 e 1909. Nos últimos anos, devido à melhoria dos modelos de estrutura 3D e o desenvolvimento dos métodos numéricos, foram elaborados vários estudos de síntese de movimento forte do solo para a região do Baixo Tejo utilizando o método de diferenças finitas. Para confirmar o modelo de velocidades desta bacia usámos medidas de ruído sísmico, aplicámos um método baseado na razão espectral H/V, e, a partir destas curvas, por inversão, obtivemos um modelo de velocidades para a região estudada. Os resultados revelam uma boa concordância entre o modelo obtido e os dados geofísicos e geológicos recolhidos na mesma área._ ABSTRACT: Along his history the Lower Tagus Valley (LTV) area was shaken by several earthquakes. The largest reported had their origin in the southwestern part of Iberia. Other moderate earthquakes were produced by local sources such as the 1344, 1531 and the 1909. ln the last years, due to 3D structural model improvement and development in numerical methods, several studies have successful obtained strong-ground motion synthesis for the LVT region using finite difference method. To confirm the velocity model of the LTV sedimentary basin obtained by geophysical and geological data, we use broad-band microtremor measurements and application of the horizontal to vertical (H/V) spectral ratio method. We have obtained a velocity model for the studied region by inversion of the H/V curve. The results have good agreement geological and geophysical data.