首页> 外文期刊>Journal of the British Interplanetary Society >ROLES OF SOLAR POWER FROM SPACE FOR EUROPE: SPACE EXPLORATION AND COMBINATIONS WITH TERRESTRIAL SOLAR POWER PLANT CONCEPTS
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ROLES OF SOLAR POWER FROM SPACE FOR EUROPE: SPACE EXPLORATION AND COMBINATIONS WITH TERRESTRIAL SOLAR POWER PLANT CONCEPTS

机译:欧洲空间太阳能的作用:空间探索以及与地面太阳能电站概念的结合

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The paper presents the prospective roles of SPS concepts for Europe, shows the outcome of recent studies undertaken by ESA's Advanced Concepts Team (ACT) together with European industry and research centres and gives insight into planned activities. The main focus is on the assessment of the principal validity and economic viability of solar power from space concepts in the light of advances in alternative sustainable, clean and potentially abundant solar-based terrestrial concepts. The paper takes into account expected changes in the European energy system (e.g. gradual introduction of hydrogen as energy vector). Special emphasis is given to the possibilities of integrating space and terrestrial solar plants. The relative geographic proximity of areas in North Africa with high average solar irradiation to the European energy consumer market puts Europe in a special position regarding the integration of space and terrestrial solar power concepts. The paper presents a method to optimise such an integration, taking into account different possible orbital constellations, terrestrial locations, plant number and sizes as well as consumer profiles and extends the scope from the European-only to a multi continental approach including the fast growing Chinese electricity market. The work intends to contribute to the discussion on long-term options for the European commitment to worldwide CO_2 emission reduction. Cleaner electricity generation and environmentally neutral transport fuels (e.g. solar generated hydrogen) might be two major tools in reaching this goal.
机译:本文介绍了SPS概念在欧洲的潜在作用,展示了ESA的高级概念团队(ACT)与欧洲工业和研究中心一起进行的近期研究的结果,并对计划中的活动进行了深入了解。主要重点是根据替代性可持续,清洁和潜在丰富的太阳能地面概念的进展,从空间概念评估太阳能的主要有效性和经济可行性。该文件考虑了欧洲能源系统的预期变化(例如逐步引入氢作为能源载体)。特别强调了整合空间和地面太阳能发电厂的可能性。北非地区平均日照量高,与欧洲能源消费市场的地理位置相对较近,这使欧洲在空间和地面太阳能概念的整合方面处于特殊位置。本文提出了一种优化这种整合的方法,其中考虑了不同的可能的轨道星座,陆地位置,植物数量和大小以及消费者概况,并将范围从仅欧洲扩展到包括快速增长的中国在内的多大陆方法电力市场。这项工作旨在促进有关欧洲致力于减少全球CO_2排放的长期方案的讨论。清洁发电和环境中性运输燃料(例如太阳能产生的氢)可能是实现这一目标的两个主要工具。

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