アバディーンにおけるポンピングサイクルカイト風力発電システムの従来型風力タービンとの比較に関する理論的解析
Theoretical Analysis of the Power Generation of Pumping Cycle Kite Power Systems Compared to Traditional Wind Turbines in Aberdeen (原題)
Ye, Z., Chaer, I., Hartungi, R., Ross, M
🤖 gxceed AI 要約
日本語
本研究は、英国アバディーン市におけるAirborne Wind Energy (AWE)システムの実現可能性を理論的に検討した。風速分布モデルと性能モデルを用いて、30kWの発電機を備えたカイトシステムと従来型タービンの年間発電量を比較し、カイトシステムが約2倍の発電量を示すことを明らかにした。
English
This study theoretically investigates the feasibility of Airborne Wind Energy (AWE) systems in Aberdeen, UK. Using wind speed distribution and performance models, it compares annual power production of a 30 kW kite system and a conventional turbine, finding the kite system produces about twice as much energy.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本では洋上風力の導入拡大が進むが、AWEのような新技術は未だ馴染みが薄い。本論文は、高所の安定した風を利用するAWEの可能性を示し、日本の再生可能エネルギー導入の多様化に示唆を与える。
In the global GX context
This paper contributes to global renewable energy scholarship by evaluating AWE as an innovative wind technology, relevant to countries expanding offshore wind and seeking cost-effective alternatives.
👥 読者別の含意
🔬研究者:Provides a theoretical model for comparing AWE and conventional wind turbines, useful for renewable energy system design.
🏢実務担当者:Offers insights into AWE's potential for higher energy yield, relevant for renewable project developers.
🏛政策担当者:Highlights AWE as a promising technology for meeting net-zero targets, informing policy support for innovative renewables.
📄 Abstract(原文)
The United Kingdom (UK) has pledged to reduce its greenhouse-gas emissions to Net Zero by 2050. However, in July 2022, the High Court ruled that the government’s net zero strategy failed to outline policies that would enable it to meet the target. As a result, the government published a new plan that sets out opportunities for innovative technologies like Floating Offshore Wind Manufacturing, and hydrogen, which will not only help us reach net zero. For wind, the government's goal is to develop up to 50 GW of offshore wind by 2030. The challenge of such an expansion is huge. It means the United Kingdom will need to install an estimated 3,200 new, and much larger, wind turbines by 2030—roughly three new turbines every 2 days. Airborne Wind Energy (AWE) systems are part of a new class of wind energy converters that is receiving considerable attention in the renewable energy generation arena. AWE systems benefit from the steadier and stronger wind streams at high altitudes to generate more energy from wind while avoiding the expense of tower construction. This paper presents a feasibility study of using AWE systems in the UK and particularly in the City of Aberdeen to generate renewable energy. The characteristics of wind energy distributions were theoretically investigated by developing a wind speed distribution model, and then the annual power production of a kite system and a turbine system with 30 kW generator were analysed by applying the annual wind profile in Aberdeen to the performance models of these two systems. It was found that the annual power production of the kite system was two times higher than that of a normal turbine system.
🔗 Provenance — このレコードを発見したソース
- base https://openresearch.lsbu.ac.uk/item/94q4xfirst seen 2026-09-01 12:01:50
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