375 resultados para Tewkesbury Abbey.
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Mode of access: Internet.
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Cockersand Abbey Lighthouse, in River Lune the Baulk, River Lune estuary on the Lancashire Fylde peninsula in the North West of England, UK. This photo is part of a Photo Album that includes pictures from 1935 to 1954.
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http://www.archive.org/details/mongolmission008646mbp
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The Abbey Theatre played a leading role in the politicisation of the revolutionary generation that won Irish freedom, but comparatively little is known about the men and women who formed the lifeblood of the institution: those whose radical politics drove them to fight in the 1916 Rising.
Drawing on a huge range of previously unpublished material, The Abbey Rebels of Easter 1916 explores the experiences, hopes and dreams of these remarkable but largely forgotten individuals: Máire Nic Shiubhlaigh, the Abbey’s first leading lady; Peadar Kearney, author of the national anthem; feminist Helena Molony, the first female political prisoner of her generation; Seán Connolly, the first rebel to die in the Rising; carpenter Barney Murphy; usherette Ellen Bushell; and Hollywood star Arthur Shields.
Invigorating and provocative, this is the story of how, in the years following the Easter Rising, the radical ideals that inspired their revolution were gradually supplanted by a conservative vision of the nation Ireland would become. Lavishly illustrated with 200 documents and images, it provides a fresh and compelling account of the Rising and its aftermath.
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Analysis of a set of bones redeposited in a medieval abbey graveyard showed that the individual had been beheaded and chopped up, and this in turn suggested one of England's more gruesome I execution practices. Since quartering was generally reserved for the infamous, the author attempts to track down the victim and proposes him to be Hugh Despenser, the lover of King Edward II.
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Two-dimensional flood inundation modelling is a widely used tool to aid flood risk management. In urban areas, where asset value and population density are greatest, the model spatial resolution required to represent flows through a typical street network (i.e. < 10m) often results in impractical computational cost at the whole city scale. Explicit diffusive storage cell models become very inefficient at such high resolutions, relative to shallow water models, because the stable time step in such schemes scales as a quadratic of resolution. This paper presents the calibration and evaluation of a recently developed new formulation of the LISFLOOD-FP model, where stability is controlled by the Courant–Freidrichs–Levy condition for the shallow water equations, such that, the stable time step instead scales linearly with resolution. The case study used is based on observations during the summer 2007 floods in Tewkesbury, UK. Aerial photography is available for model evaluation on three separate days from the 24th to the 31st of July. The model covered a 3.6 km by 2 km domain and was calibrated using gauge data from high flows during the previous month. The new formulation was benchmarked against the original version of the model at 20 m and 40 m resolutions, demonstrating equally accurate performance given the available validation data but at 67x faster computation time. The July event was then simulated at the 2 m resolution of the available airborne LiDAR DEM. This resulted in a significantly more accurate simulation of the drying dynamics compared to that simulated by the coarse resolution models, although estimates of peak inundation depth were similar.
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Two-dimensional flood inundation modelling is a widely used tool to aid flood risk management. In urban areas, the model spatial resolution required to represent flows through a typical street network often results in an impractical computational cost at the city scale. This paper presents the calibration and evaluation of a recently developed formulation of the LISFLOOD-FP model, which is more computationally efficient at these resolutions. Aerial photography was available for model evaluation on 3 days from the 24 to the 31 of July. The new formulation was benchmarked against the original version of the model at 20 and 40 m resolutions, demonstrating equally accurate simulation, given the evaluation data but at a 67 times faster computation time. The July event was then simulated at the 2 m resolution of the available airborne LiDAR DEM. This resulted in more accurate simulation of the floodplain drying dynamics compared with the coarse resolution models, although maximum inundation levels were simulated equally well at all resolutions tested.