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Titlebook: Energy Master Planning toward Net Zero Energy Resilient Public Communities Guide; Alexander Zhivov Book 2022 The Editor(s) (if applicable)

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楼主: 中产阶级
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Methodology of Energy Planning Process,raming energy goals within defined community-specific constraints. The Energy Master Planning concept described in this guide differs from previously developed concepts in such a way, that in addition to meeting the community’s framing energy goals, it integrates the development of a highly resilien
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Establishing Energy Use-Related Goals and Design Constraints,aster Planning is conducted. They may include energy use, emissions, sustainability, resilience, regulations and directives, regional and local limitations such as available energy types, local conditions, costs of energy supply to the community and stakeholders, and individual project requirements.
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Defining, Measuring, and Assigning Resilience Requirements,s to private and public communities. Therefore, resilience must be an integral goal of the community-wide Energy Master Planning process since the application of energy resilience principles is important during the design of new and upgrades of existing energy systems. Best practices for resilient e
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Data Required for Energy Master Planning and Resilience Analysis,n building archetypes and topology, HVAC systems, energy generation systems and existing distribution systems, basic fuel availability and potentials, and possible synergies along with the information required for unique building modeling and resilience analysis. The chapter describes specific types
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Selection of Energy System Architecture and Technologies,technologies have been categorized and documented with their characteristics (cost and performance), application, pros, and cons described. This information can be used for detailed analysis of the Energy Master Plan baseline and of different alternatives including the base case and more advanced co
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Energy Performance Calculation Method of Complex Energy Systems, of resilience to various design basis threats. The tool operates over networks that supply both individual buildings and districts. These networks are comprised of components (loads, generation, distribution/routing, storage, and transmission assets) and connections. These connections form the topo
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https://doi.org/10.1007/978-3-319-59885-7 systems that depend on the climate zone, the density of energy users, and local resources. The Energy Master Planning can be applied to different scales of communities, for example, a group of buildings, a campus, a city, a region, or on the national scale. However, to benefit from synergies and to
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