成果報告書詳細
管理番号20140000000773
タイトル*平成25年度中間年報 「太陽光発電多用途化実証プロジェクト 太陽光発電多用途化可能性検討事業 コミュニティ型ベランダソーラーの研究開発」
公開日2015/4/24
報告書年度2013 - 2013
委託先名みんな電力株式会社
プロジェクト番号P13008
部署名新エネルギー部
和文要約
英文要約Title: Feasibility study project for versatile application of photovoltaic generation/Research and development of veranda solar in community type.
(FY2013-FY2014) FY2013 Annual Report

In the field of “Building”, for photovoltaic power generation system installed in veranda of apartment house, after the potential of introduction is made clear, the optimum module, installation method, utility-interact, added value, power generation cost and the like are examined and discussed. The specification of photovoltaic power generation system is to be proposed.
Progress and Results:
1.Research for Potential of Introduction
In this year, the hearing was executed for two companies, “ the Real Estate Economic Institute and Tokyo Kantei Ltd.” . These companies have the information about statistical real estate.
In order to do the trial calculation about amount of generation power, the computations for total domestic amount of verandas having the optimum direction and specification for solar panel installation were attempted. We can obtain the information that there is no such statistic real estate one. Because of this, for 2014, the total number of apartment buildings according to various shapes and functions would be investigated and the amount of generating power would be calculated according to possible area for installation.
2.Examination for Solar Panel
In the location and shape to be installed, the optimum solar panels are examined.
For solar panels, with considering about generating efficiency, weight, flexibility and the cost, besides appearances, design, installation/storing characteristics, the appropriate solar panel was studied. In addition, the desirable development guidelines of solar panel are made clear as the future veranda solar. As the veranda solar panel is installed at the narrow space of veranda, the panel should be arranged efficiently and taken into account of the scenery.
For such solar cell to satisfy above conditions, the flexible amorphous Si solar cell, organic solar cell and spherical shape solar cell could be mentioned. Among them, it becomes clear that the organic solar cell is the best choice as concerned to the cost. In addition, as the organic solar cell is superior with regard to flexibility, light-weight, curved surface characteristic -3D– and design property, and as it becomes clear from hearings that these results are taken into account, the organic solar cell is just under consideration to introduce.
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