926 resultados para live-looping


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Cold-water corals, such as Lophelia pertusa, are key habitat-forming organisms found throughout the world's oceans to 3000 m deep. The complex three-dimensional framework made by these vulnerable marine ecosystems support high biodiversity and commercially important species. Given their importance, a key question is how both the living and the dead framework will fare under projected climate change. Here, we demonstrate that over 12 months L. pertusa can physiologically acclimate to increased CO2, showing sustained net calcification. However, their new skeletal structure changes and exhibits decreased crystallographic and molecular-scale bonding organization. Although physiological acclimatization was evident, we also demonstrate that there is a negative correlation between increasing CO2 levels and breaking strength of exposed framework (approx. 20-30% weaker after 12 months), meaning the exposed bases of reefs will be less effective 'load-bearers', and will become more susceptible to bioerosion and mechanical damage by 2100.

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The aim of the study was to evaluate the inter-operator reliability of OPTA Client System which is used to collect live football match statistics by OPTA Sportsdata Company. Two groups of experienced operators were required to analyze a Spanish league match independently. Results showed that team events coded by independent operators reached a very good agreement (kappa values were 0.92 and 0.94) and average difference of event time was 0.06±0.04 s. The reliability of goalkeeper actions was also at high level, kappa values were 0.92 and 0.86. The high intra-class correlation coefficients (ranged from 0.88 to 1.00) and low standardized typical errors (varied from 0.00 to 0.37) of different match actions and indicators of individual outfield players showed a high level of inter-operator reliability as well. These results suggest that the OPTA Client System is reliable to be used to collect live football match statistics by well trained operators.

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Chemical-looping combustion allows an integration of CO2 capture in a thermal power plant without energy penalty; secondly, a less exergy destruction in the combustion chemical transformation is achieved, leading to a greater overall thermal efficiency. This paper focus on the study of the energetic performance of this concept of combustion in an integrated gasification combined cycle power plant when synthesis gas is used as fuel for the gas turbines. After thermodynamic modelling and optimization of some cycle parameters, the power plant performance is evaluated under diverse working conditions and compared to a conventional integrated gasification combined cycle with precombustion capture. Energy savings in CO2 capture and storage has been quantified. The overall efficiency increase is found to be significant and even notable, reaching values of around 7%. In order to analyze the influence of syngas composition on the results, different H2-content fuels are considered.

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El contexto actual, en el que la meteorología resulta cada vez más extrema y los daños por crecidas se convierten algo habitual, resulta de gran importancia contar con herramientas que posibiliten la prevención de estos, en la medida de lo posible. Los sistemas de alerta temprana resultan de gran utilidad en la prevención de pérdidas materiales y humanas.

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Hoy en día no se puede concebir la gestión de una red de abastecimiento sin un modelo matemático que represente los activos de los que se dispone. Desde hace ya varias décadas, las empresas suministradoras de agua potable o las gestoras municipales y de regadío han comprendido la importancia que tienen estos modelos, por lo que han invertido tiempo y dinero en completarlos para que representen fielmente la realidad de sus infraestructuras, sirviéndose de ellos para conocer el comportamiento de su red ante posibles cortes, reparaciones o cambios en la demanda de los abonados. Sin embargo, la situación actual, en la que resulta cada vez más crítico el aprovechamiento de los recursos disponibles, tanto medioambientalmente (ahorro de agua y de energía), como económicamente, obliga a los gestores a analizar muchos datos simultáneamente. Estos datos llegan desde muy diversas fuentes, esperándose que el operador los interprete rápidamente, sean incorporados al modelo matemático para obtener un resultado e inmediatamente se obtenga una respuesta para la administración de la red.