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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Modelling to predict future energy performance of solar thermal cooling systems for building applications in the North East of England
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Modelling to predict future energy performance of solar thermal cooling systems for building applications in the North East of England

机译:进行建模以预测英格兰东北部用于建筑应用的太阳能热冷却系统的未来能源性能

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摘要

Controlling and reducing energy consumption in buildings has been identified by policy makers and politicians as way of meeting global targets for greenhouse gas reductions and mitigating the impacts of climate change. Buildings must be designed and built to withstand harsh future weather patterns, and be energy efficient to run. In the UK, there has been an increasing demand to provide cooling in summer months and this is likely to increase in the future with global temperatures rising. While the potential of solar thermal energy to cool buildings has been investigated in warmer climates, this is not the case in the UK. An optimised solar thermal simulation model was developed using the UKCIP climate change weather prediction scenarios over the next 40 years to assess cooling effectiveness delivered by solar powered air cooling systems. This paper bridges the modern concept of solar cooling technology and future potential for new build and retrofitted commercial applications, using modern modelling concepts.
机译:决策者和政客已经确定控制和减少建筑物中的能耗是实现减少温室气体的全球目标和减轻气候变化影响的一种方式。建筑物的设计和建造必须能够承受未来严酷的天气状况,并且必须节能运行。在英国,夏季提供制冷的需求不断增加,并且随着全球温度的升高,将来这种需求可能还会增加。尽管已经在温暖的气候下研究了太阳能热为建筑物降温的潜力,但在英国却并非如此。在未来40年中,使用UKCIP气候变化天气预报方案开发了优化的太阳热模拟模型,以评估太阳能空气冷却系统提供的冷却效果。本文利用现代建模概念,将现代的太阳能冷却技术概念与新建和改型商业应用的未来潜力联系起来。

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