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Sensor and live-data app development to allow data digitisation for an innovative, sustainable micro-wind turbine that harnesses wind energy to reduce electricity bills by £1.4K and emissions by 9,000 kg of CO2 per year

Sensor and live-data app development to allow data digitisation for an innovative, sustainable micro-wind turbine that harnesses wind energy to reduce electricity bills by £1.4K and emissions by 9,000 kg of CO2 per year
传感器和实时数据应用程序开发,可实现创新、可持续微型风力涡轮机的数据数字化,该涡轮机利用风能每年减少 1,400 英镑电费和 9,000 公斤二氧化碳排放
批准号:
10044926
负责人:
金额:
$6.36万
依托单位:
依托单位国家:
英国
项目类别:
Grant for R&D
财政年份:
2022
资助国家:
英国
项目状态:
已结题
起止时间:
2022 至 --

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中文摘要
翻译
Enturi是一家英国可再生能源中小企业,核心项目团队由Alex Shakehaft(首席执行官/联合创始人,BEng/MSc,前RAF,项目管理)和Stuart Roberts(CTO/联合创始人,Meng,前RAF,毕业电池工程师)组成。要保持净零路径,到2050年,风能需要扩大11倍。到2030年,每年需要增加390GW的风电装机容量。要在2050年实现净零排放,全球每年的清洁能源投资到2030年将需要增加两倍以上,达到3.32吨左右(国际能源署,2021)。风力涡轮机行业的未来增长将通过可访问和透明的数据数字化实现运营效率来加速(DNV,2019年)Enturi正在开发一种数据传感器和实时数据应用程序,以实现新型微型风力涡轮机的数字化,这些新型微型风力涡轮机可以为便携式/分散式可再生能源站供电,以快速扩展数字化的可再生能源数据。传感器和实时数据应用程序的开发将允许透明和可访问的数据可视化和数据共享。这将允许最终用户监控能源产生、能源存储和成本节约,并使Enturi能够通过监控/跟踪涡轮机故障提供端到端解决方案,以快速解决操作错误(维护)。模块化/便携式/廉价涡轮机将减少噪音污染,最大限度地减少对生物多样性的影响,消耗更少的空间/时间来安装,并由可持续材料制造。它还将与现有的基础设施兼容。该解决方案将满足行业需求和脱碳目标,并将与英国创新战略、COP26气候公约目标、巴黎协议、第六碳预算、2050年海洋2050战略、英国清洁绿色倡议和2050年净零目标保持一致。涡轮机将不显眼(不会留下风景伤疤),叶片暴露较低(减少噪音/生物多样性影响),并推动循环经济,因为它将由可持续材料制成。通过传感器和应用程序实现的简单/透明/可访问的数据将允许对系统故障做出快速反应/反应,以确保运营效率和有效维护,并通过可视化的成本节约通知和参与最终用户。该设计将缓解目前大型风力发电系统的设计缺陷。
英文摘要
Enturi is a UK renewable energy SME with a core project team of Alex Shakeshaft (CEO/co-founder, BEng/MSc, ex-RAF, project management) and Stuart Roberts (CTO/co-founder, MEng, ex-RAF, graduate battery engineer).To stay on the net-zero path, wind energy needs to be scaled up 11-fold by 2050\. Annual wind capacity additions of 390GW need to be made by 2030\. To reach net-zero emissions by 2050, the annual clean energy investment globally will need to more than triple by 2030 to around £3.32T (International-Energy-Agency, 2021). Future growth in the wind turbine sector will be accelerated by operational efficiency, enabled by accessible and transparent data digitisation (DNV, 2019)Enturi is developing a data sensor and live-data app to permit the digitisation of novel micro-wind turbines that can feed a portable/decentralised renewable energy station to rapidly expand digitised renewable energy data. The development of the sensor and live-data app will permit transparent and accessible data visualisation and data sharing. This will allow end users to monitor energy generation, energy storage, and cost savings, as well as allow Enturi to offer end-to-end solutions by monitoring/tracking turbine faults to rapidly address operational errors (maintenance).The modular/portable/inexpensive turbine will reduce noise pollution, minimise the impact on biodiversity, consume less space/time to install, and be manufactured from sustainable materials. It will also be compatible with the existing infrastructure. The affordable/low-impact turbine has the potential to save up to £1.4K/year on electricity bills and 9K kg of CO2 emissions.The solution will address the industry needs and decarbonisation objectives and will align with the UK Innovation Strategy, COP26 climate pact targets, Paris Agreement, Sixth Carbon Budget, Maritime 2050 Strategy, the UK's Clean Green Initiative, and 2050 net-zero targets. The turbine will be unobtrusive (no landscape scarring), have low blade exposure (reducing noise/biodiversity impact), and drive a circular economy because it will be made from sustainable materials. The simple/transparent/accessible data enabled via the sensor and app will allow rapid responses/reactions to system failures to ensure operational efficiency and effective maintenance, as well as inform and engage end users with visualised cost savings. The design will mitigate current design flaws in large-scale wind-power generating systems.
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