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GENSSIS (Gravitational Energy Storage & Synchronous Inertial Stability) Phase 2

GENSSIS (Gravitational Energy Storage & Synchronous Inertial Stability) Phase 2
GENSSIS(重力储能
批准号:
133709
负责人:
金额:
$91.78万
依托单位:
依托单位国家:
英国
项目类别:
Collaborative R&D
财政年份:
2018
资助国家:
英国
项目状态:
已结题
起止时间:
2018 至 --

项目摘要

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中文摘要
翻译
“电能是目前我们拥有的最清洁、最通用的能源形式,成功开发的技术可以将风能和太阳能转化为工业数量的电能,现在有真实的潜力开始减少排放到大气中的二氧化碳的破坏性水平。然而,最终为了促进这些可持续但非同步的电源有意义地集成到我们的配电网络中,需要支持和维持电网稳定性的进一步创新基础设施系统,该项目旨在成为该解决方案的一部分。能源损害了成本降低和过渡性低碳电力集成的安全性。能源SRS成立于2013年,旨在探索低碳计划,帮助支持系统惯性,并确保风能和太阳能农场等能源的电力整合。在开发基础设施系统以在辅助服务市场内提供频率响应的同时,能源SRS还投入时间采购技术知识和供应链专业知识,以促进该解决方案的成功商业化。这导致了建立,2015年,由五家英国公司组成的团队与布里斯托大学合作,建立了一个多技能的工业和学术伙伴关系。该项目正在合作开发重力储能系统,首字母缩写为GENSSIS(重力储能和同步惯性稳定性)。这是一个非常强大的机电系统,可以实现模块化的公用事业扩展,也可以与现有的电网基础设施共处一地。能源SRS是该项目的主要合作伙伴和管理者,该项目目前正在接受英国创新公司的支持,该项目自2017年1月开始实施,将持续到2018年3月。重力势能是一个经过验证的,然而,一个可行的、大规模的、公用事业、安装的开发、建设、测试和商业化需要新的知识、技能和流程。项目参与者是:* 英国电力储备有限公司 * PR Marriott钻井有限公司 * Caley Offshore Systems有限公司 * Bayliss Consulting有限公司 * Energy SRS有限公司 * 布里斯托尔大学该项目代表第二阶段,开发将在2018年完成所有设计,为2019/2020年第三阶段建造和测试的1.2MWhr、并网、原型做准备。
英文摘要
"Electrical energy is currently the cleanest most versatile form of power that we have, the successful development of technologies which can convert wind and solar energy into industrial quantities of electrical power has now a real potential to start reducing the destructive levels of CO2 that are being discharged into our atmosphere. However, ultimately in order to facilitate a meaningful integration of these, sustainable but non-synchronous, power sources into our distribution networks, further innovative infrastructure systems that support and maintain grid stability are required, this project aims to be part of that solution.Current power grid balancing systems have the effect of limiting or displacing otherwise viable, sustainable, energy compromising the cost reduction and security of a transitional, low carbon, power integration. Energy SRS was established in 2013 to explore low carbon initiatives that help to support system inertia and secure the increased integration of electrical power from sources such as Wind and Solar Farms.In parallel with the development of an infrastructure system to provide frequency response within the Ancillary Services Market, Energy SRS has also invested time sourcing the technical knowledge and supply chain expertise that would facilitate the successful commercialisation of this solution.This has led to the establishment, in 2015, of a team of five UK companies and the University of Bristol to work closely in what is now a multi skilled industrial and academic partnership.This project is collaboratively undertaking the development of a gravitational energy storage system, with the acronym GENSSIS, (Gravitational Energy Storage & Synchronous Inertial Stability). This is a very robust, electromechanical system which can achieve modular utility scaling and which can also be co-located with existing grid infrastructure.Energy SRS is the lead partner and manager to the project which is presently receiving the support of Innovate UK during this ""Phase 1"" which has been live since Jan 2017 and will run until March 2018\.Gravitational Potential Energy is a validated, well established concept, however, the development, construction, testing, and commercialisation of a viable, large scale, utility, installation requires new knowledge, skills and processes.The project participants are:* UK Power Reserve Ltd* PR Marriott Drilling Ltd* Caley Offshore Systems Ltd* Bayliss Consulting Ltd* Energy SRS Ltd* The University of BristolThis project represents a Phase 2,development to finalise all designs during 2018, in preparation for a 1.2MWhr, grid connected, prototype to be constructed and tested during phase 3 in 2019/2020"
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国内基金
海外基金
Baryogenesis, Dark Matter and Nanohertz Gravitational Waves from a Dark Supercooled Phase Transition
  • 批准号:
    24ZR1429700
  • 项目类别:
    省市级项目
  • 资助金额:
    --
  • 批准年份:
    2024
  • 负责人:
    YUICHIRO NAKAI
  • 依托单位:
Understanding complicated gravitational physics by simple two-shell systems
  • 批准号:
    12005059
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    24.0万元
  • 批准年份:
    2020
  • 负责人:
    国分隆文
  • 依托单位: