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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Efficiency potential of indirectly heated solar reforming with open volumetric solar receiver
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Efficiency potential of indirectly heated solar reforming with open volumetric solar receiver

机译:开放式容积式太阳能接收器间接加热式太阳能转化的效率潜力

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In solar reforming, the heating value of natural gas is increased by utilization of concentrated solar radiation. Hence, it is a process for storing solar energy in a stable and transportable form that also permits further conversion into liquid fuels like methanol. The feasibility of solar reforming is proved. However, its overall process efficiency potential has not been studied systematically. In this work, an indirectly heated solar reforming process with air as heat transfer fluid is designed and modelled to produce syngas suitable for subsequent methanol synthesis. For provision of solar high temperature heat, an open volumetric receiver is implemented into the process model and the overall performance is investigated. Results show the paramount significance of the air return ratio of the receiver and its ability to achieve high efficiencies at temperatures above 850 degrees C. For realistic air return ratios, design point process efficiencies of 19% can be achieved, for an increased air return ratio, values up to 23% are feasible. The determined corresponding annual efficiencies are 12% and 14% respectively. Considering its relative technical simplicity this makes indirectly heated solar reforming a promising technology to overcome the current limitations of solar energy in the medium term. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在太阳重整中,通过利用集中的太阳辐射来增加天然气的热值。因此,这是一种以稳定且可运输的形式存储太阳能的方法,该方法还允许进一步转化为液体燃料,例如甲醇。证明了太阳能重整的可行性。但是,尚未对其整体过程效率潜力进行系统研究。在这项工作中,设计并建模了一种以空气作为传热流体的间接加热的太阳能重整工艺,以生产适用于后续甲醇合成的合成气。为了提供太阳能高温热量,在过程模型中实现了开放式容积接收器,并对整体性能进行了研究。结果表明,接收器的回风率及其在850摄氏度以上的温度下实现高效率的能力至关重要。对于实际的回风率,可以实现19%的设计点工艺效率,从而提高回风率,最高值为23%是可行的。确定的相应年效率分别为12%和14%。考虑到其相对的技术简单性,这使得间接加热的太阳能重整技术成为有希望的技术,以克服目前中期的太阳能局限性。 (C)2015 Elsevier Ltd.保留所有权利。

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