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Renewable energy and sustainable communities: Alaska's wind generator experience?

机译:可再生能源和可持续社区:阿拉斯加的风力发电机经验

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Background In 1984, the Alaska Department of Commerce and Economic Development (DCED) issued the State's first inventory/economic assessment of wind generators, documenting installed wind generator capacity and the economics of replacing diesel-fuel-generated electricity. Alaska's wind generation capacity had grown from hundreds of installed kilowatts to over 15.3 megawatts (MW) by January 2012. Method This article reviews data and conclusions presented in “Alaska's Wind Energy Systems; Inventory and Economic Assessment” (1). (Alaska Department of Commerce and Economic Development, S. Konkel, 1984). It provides a foundation and baseline for understanding the development of this renewable energy source. Results Today's technologies have evolved at an astonishing pace; a typical generator in an Alaska wind farm now is likely rated at 1.5-MW capacity, compared to the single-kilowatt (kW) machines present in 1984. Installed capacity has mushroomed, illustrated by Unalakleet's 600-kW wind farm dwarfing the original three 10-kW machines included in the 1984 inventory. Kodiak Electric had three 1.5-MW turbines installed at Pillar Mountain in 2009, with three additional turbines of 4.5-MW capacity installed in 2012. Utilities now actively plan for wind generation and compete for state funding. Discussion State of Alaska energy policy provides the context for energy project decision-making. Substantial renewable energy fund (REF) awards – $202,000,000 to date for 227 REF projects in the first 5 cycles of funding – along with numerous energy conservation programs – are now in place. Increasing investment in wind is driven by multiple factors. Stakeholders have interests both in public policy and meeting private investment objectives. Wind generator investors should consider project economics and potential impacts of energy decisions on human health. Specifically this article considers: changing environmental conditions in remote Alaska villages, impacts associated with climate change on human health, progress in better understanding wind energy potential through resource assessments and new tools for detailed feasibility and project planning, need for comprehensive monitoring and data analysis, and state funding requirements and opportunity costs. Conclusion The energy policy choices ahead for Alaska will have important implications for Arctic population health, especially for those villages whose relatively small size and remote locations make energy a key component of subsistence lifestyles and community sustainability. Wind generation can contribute to meeting renewable energy goals and is a particularly important resource for rural and remote Alaskan communities currently dependent on diesel fuel for generating electricity and heat.
机译:背景信息1984年,阿拉斯加商业和经济发展部(DCED)发布了该州对风力发电机的首次清单/经济评估,记录了风力发电机的装机容量以及更换柴油燃料发电的经济性。到2012年1月,阿拉斯加的风力发电容量已从数百个装机千瓦增加到超过15.3兆瓦(MW)。方法本文回顾了“阿拉斯加的风能系统”中的数据和结论。库存和经济评估”(1)。 (阿拉斯加商业和经济发展部,S。Konkel,1984年)。它为了解这种可再生能源的发展提供了基础和基准。结果当今的技术以惊人的速度发展。与1984年的单千瓦(kW)机器相比,阿拉斯加风电场的一台典型发电机现在的额定功率可能为1.5兆瓦。装机容量如雨后春笋般涌现,例如Unalakleet的600千瓦风电场使原先的三个10瓦特相形见illustrated。 1984年清单中包括的-kW机器。 2009年,科迪亚克电气(Kodiak Electric)在皮拉尔山(Pillar Mountain)安装了3台1.5兆瓦的涡轮机,2012年又安装了3台4.5兆瓦容量的涡轮机。公用事业公司现在正在积极规划风力发电并争取国家资金。讨论阿拉斯加能源政策状况为能源项目决策提供了背景。迄今为止,可再生能源基金(REF)的奖励总额高达202,000,000美元,涉及前5个资助周期中的227个REF项目,此外还有众多节能计划。风能投资的增加是由多种因素驱动的。利益相关者对公共政策和实现私人投资目标都有兴趣。风力发电机的投资者应考虑项目的经济性以及能源决策对人类健康的潜在影响。本文具体考虑的是:阿拉斯加偏远村庄的环境条件的变化,与气候变化有关的对人类健康的影响,通过资源评估和用于详细可行性研究和项目规划的新工具更好地了解风能潜力的进展,全面监控和数据分析的需要,并说明资金需求和机会成本。结论阿拉斯加未来的能源政策选择将对北极人口的健康产生重要影响,特别是对于那些相对较小且偏远地区使能源成为自给自足的生活方式和社区可持续发展的重要组成部分的村庄而言。风力发电可以有助于实现可再生能源的目标,对于当前依靠柴油发电和供热的农村和偏远的阿拉斯加社区,风力发电尤其重要。

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