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Titlebook: Concentrating Solar Thermal Technologies; Analysis and Optimis Maria Isabel Roldán Serrano Book 2017 Springer International Publishing Swit

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Charles E. Burkhardt,Jacob J. Leventhal a working fluid. Thus, the receiver effectiveness has a significant influence on the overall efficiency of the facility. This chapter deals with the optimisation of solar receivers by CFD simulation, considering both previous designs and operating conditions in the facility. Therefore, several case
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Interaction of Atoms with Radiation,l electricity plays in the demand supply. Furthermore, the most important aspects for the improvement of concentrating solar thermal technologies (more efficient solar receivers and heat transfer fluids) have been studied by using Computational Fluid Dynamics, which is presented as a versatile and p
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Maria Isabel Roldán SerranoOffers a more focused view on the state of the art in concentrating solar thermal technologies.Evaluates key elements of the technology using a less time-consuming simulation methodology based on comp
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Introduction,f environmentally-friendly energy technologies. In this context, concentrating solar thermal technologies are increasingly relevant because of the need to reduce carbon dioxide emissions in electricity and heat generation required to reach the goal of limiting climate change to 2 °C above pre-indust
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Concentrating Solar Thermal Technologies,y worldwide. This chapter describes the technologies used in the production of solar thermal electricity and process heat divided into medium-concentration solar technology, high-concentration solar technology and the one devoted to solar fuels and industrial processes at high temperatures.
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