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IESSLA: Integrated Energy Systems Site seLection Assessment for Accelerated Business and Project Development in Off-Grid Islands

IESSLA: Integrated Energy Systems Site seLection Assessment for Accelerated Business and Project Development in Off-Grid Islands
IESSLA:综合能源系统选址评估,加速离网岛屿的业务和项目开发
批准号:
90314
负责人:
金额:
$27.17万
依托单位:
依托单位国家:
英国
项目类别:
Feasibility Studies
财政年份:
2021
资助国家:
英国
项目状态:
已结题
起止时间:
2021 至 --

项目摘要

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中文摘要
翻译
菲律宾等群岛国家由于电网连接障碍,继续应对偏远岛屿电力供应方面的挑战。目前,这些离网社区大多依赖昂贵且污染严重的柴油发电机,无法提供可靠、负担得起和可持续的能源供应。可再生能源技术,如太阳能光伏发电、风能、生物量和潮汐能转换,已准备好为离网地区提供电力。随着成本下降的趋势,这些选择是私营部门投资市场的机会,这个市场曾经由国家政府的传教士电气化计划处理。然而,个别项目地点的规模较小和进行现场可行性研究的费用是吸引私人投资者的障碍,本项目旨在通过开发综合评估工具,减少发展可再生离网能源系统的障碍。该工具包综合了对技术经济、环境、社会、法律的和地理因素的分析,以确定可行的岛屿供进一步审议。最后,通过详细的前端设计,验证了设计结果,并展示了该工具包的应用。该项目汇集了Aquatera的专业知识(用于项目管理和技术设计审查)和OceanPixel(项目开发,利益相关者管理和工程方面)与学术合作伙伴一起(利益相关者参与,系统建模,可持续性评估)在菲律宾大学,Silliman大学和Ateneo de Davao大学。计划该项目将加速可持续能源系统的部署,从而提高生活质量,提高离网社区的生产力。随着该工具包的开发和使用,能源开发商可以降低预可行性调查的成本,并更好地利用其资源开发最具潜力的地点。该项目将在菲律宾的3个岛屿群进行可行性研究(吕宋岛,米沙鄢群岛,和棉兰老岛),特别是在看-具有一定规模和一定居民水平的电网岛屿,通过综合能源系统方法提供可再生能源,可以实现潜在的逐步发展,考虑到如果拟议项目的下一阶段得到实施,这种能源的生产性最终用途。该项目旨在为每个岛屿群确定至少5个离网岛屿,这些岛屿可以进行更详细的评估,以便为这些候选地点/项目转移潜在的投资和/或商业案例。
英文摘要
Archipelagic nations such as the Philippines continue to deal with challenges in electricity provision in remote islands due to the barriers for grid connection. Currently, most of these off-grid communities rely on costly and polluting diesel generators which are unable to provide reliable, affordable and sustainable energy access. Renewable energy technologies, such as solar photovoltaic, wind, biomass and tidal energy conversion are poised to provide electricity in off-grid areas. With the trend of decreasing costs, these options are opportunities for private sector investment in a market that was once handled by missionary electrification programs by the national government. However, the smaller scale of individual project locations and the costs of performing on-site feasibility studies are barriers that do not attract private investors.This project aims to reduce the barriers to development of renewable off-grid energy systems by developing an integrated assessment tool. This toolkit integrates the analysis of techno-economic, environmental, social, legal and geographic considerations to identify viable islands for further consideration. A detailed front-end design is performed to verify the results and demonstrate the application of the toolkit. This project brings together the expertise of Aquatera (for project management and technical design reviews) and OceanPixel (project development, stakeholder management, and engineering aspects) together with the academic partners (for stakeholder engagement, systems modeling, sustainability assessment) at University of the Philippines, Silliman University and Ateneo de Davao University .It is planned that this project will accelerate the deployment of sustainable energy systems resulting in improved quality of life and greater productivity in off-grid communities. With the development and use of this toolkit, energy developers can cut down costs on pre-feasibility surveys and better leverage their resources towards sites with greatest potential.The project will conduct a feasibility study across the 3 island groups of the Philippines (Luzon, Visayas, and Mindanao) specifically looking at off-grid islands of a certain size and with a certain level of inhabitants where potential progressive development can be enabled by the provision of renewable energy through an integrated energy systems approach that also takes into consideration the productive end-use of such energy should the next phases of a proposed project be implemented. The project aims to identify at least 5 off-grid islands per island group that could be assessed in greater details to move the potential investment and/or business case for such candidate sites/projects.
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greenwashing behavior in China:Basedon an integrated view of reconfiguration of environmental authority and decoupling logic
  • 批准号:
    --
  • 项目类别:
    外国学者研究基金项目
  • 资助金额:
    --
  • 批准年份:
    2024
  • 负责人:
    YU BYUNGJUN
  • 依托单位:
焦虑症小鼠模型整合模式(Integrated) 行为和精细行为评价体系的构建