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Energy Master Planning: Identifying Framing Constraints that Scope Your Technology Options

机译:能源主规划:识别范围的框架约束范围您的技术选项

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This paper addresses the framing constraints for building and community energy projects that must be considered when energy master planning (EMP) is conducted. The constraints cover emissions, sustainability, resilience, regulations and directives, and regional and local limitations such as available energy types, local conditions, and project requirements. The paper reflects development results from participants in an International Energy Agency project on energy master planning and in a U.S. Department of Defense project on technology integration to achieve resilient, low-energy use military installations. It identifies a comprehensive list of framing constraints categorized into locational threats, locational resources, energy and water distribution and storage systems, building andfacility, indoor environmental, and equipment in buildings and district systems constraints. In addition, it identifies limits for these constraints that exist in seven participating countries. Some framing constraints can profoundly impact technology selection while others impact the installation of technologies (as in hardening) and have little to no impact on technology selection. Framing constraints can be assessed in different ways and there are resources available to help EMP stakeholders evaluate them. Finally, a case is made that identifying and applyingframing constraints early in EMP can bring efficiencies and better focus to the EMP process. Conclusions include 1) for holistic energy planning, it is essential to identify and assess the framing constraints that bound an optimized EMP solution, 2) framing constraints limits should be evaluated as either hard or soft or promising technologies may fall out of an EMP analysis, 3) to maintain consistent quality in the EMP process, the identification of framing constraints and their limits, and perhaps their evaluation, should be standardized, 4) a standardized approach could establish a baseline that can be used, built upon, and improved, 5) as automated EMP tools are improved or developed, the resources in this paper could possibly contribute to their interworkings relative to technology screening, and 6) continued climate change and resulting aggressive goal setting will likely drive a continued and strong emphasis on EMP.
机译:本文讨论了建筑物和社区能源项目的框架限制,必须考虑能源总规划(EMP)时必须考虑。制约因而涵盖排放,可持续性,恢复力,法规和指令以及区域和地方限制,例如可用的能源类型,当地条件和项目要求。本文反映了参与者在国际能源机构计划中的参与者和美国国防部门融合项目的发展结果,以实现有弹性,低能量使用军事设施。它识别框架限制列表,分为基础威胁,地点资源,能源和水分配和储存系统,建筑安排,室内环境和设备,建筑物和地区系统的制约。此外,它识别七个参与国家中存在的这些限制。一些框架限制可以深刻地影响技术选择,而其他框架会影响技术(如硬化)的安装,并且对技术选择没有影响。可以以不同的方式评估框架约束,并且有资源可用于帮助EMP利益相关者评估它们。最后,案例是在EMP早期识别和应用识别和应用的识别限制,可以带来效率并更好地关注EMP过程。结论包括1)对于整体能量规划,必须识别和评估结合优化的EMP解决方案的框架限制,2)应评估框架限制,因为硬或柔软或有前途的技术可能脱离EMP分析, 3)为了维持EMP过程中的一致质量,识别框架限制及其限制,也许其评估,应标准化,4)标准化方法可以建立可以使用,建立和改进的基线5 )随着自动EMP工具的改进或开发,本文的资源可能会导致其相对于技术筛选的互通,6)持续的气候变化,导致侵略性的目标环境可能会推动持续和强调EMP的强调。

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