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System Energy Assessment (SEA), Defining a Standard Measure of EROI for Energy Businesses as Whole Systems

机译:系统能源评估(SEA),为能源企业作为整个系统定义EROI的标准度量

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A more objective method for measuring the energy needs of businesses, System Energy Assessment (SEA), measures the combined impacts of material supply chains and service supply chains, to assess businesses as whole self-managing net-energy systems. The method is demonstrated using a model Wind Farm, and defines a physical measure of their energy productivity for society (EROI-S), a ratio of total energy delivered to total energy expended. Energy use records for technology and proxy measures for clearly understood but not individually recorded energy uses for services are combined for a whole system estimate of consumption required for production. Current methods count only energy needs for technology. Business services outsource their own energy needs to operate, leaving no traceable record. That uncounted business energy demand is often 80% of the total, an amount of “dark energy” hidden from view, discovered by finding the average energy estimated needs for businesses far below the world average energy consumed per dollar of GDP. Presently for lack of information the energy needs of business services are counted to be “0”. Our default assumption is to treat them as “average”. The result is a hard measure of total business demand for energy services, a “Scope 4” energy use or GHG impact assessment. Counting recorded energy uses and discounting unrecorded ones misrepresents labor intensive work as highly energy efficient. The result confirms a similar finding by Hall et al. in 1981 [1]. We use exhaustive search for what a business needs to operate as a whole, tracing internal business relationships rather than energy data, to locate its natural physical boundary as a working unit, and so define a business as a physical rather than statistical subject of scientific study. See also online resource materials and notes [2].
机译:衡量企业能源需求的更客观的方法是系统能源评估(SEA),它测量物料供应链和服务供应链的综合影响,从而将企业评估为整个自我管理的净能源系统。该方法使用风电场模型进行了演示,并定义了其社会能源生产率的物理度量标准(EROI-S),即交付的总能量与消耗的总能量之比。用于技术的能源使用记录和用于清楚理解但未单独记录的用于服务的能源使用的替代措施,合并为整个系统对生产所需消耗的估计。当前的方法仅计算技术的能源需求。商业服务将自身的能源需求外包给运营,没有可追溯的记录。未查明的企业能源需求通常占总量的80%,这是一种看不见的“暗能量”,是通过发现企业的平均能源估算需求而发现的,该需求远低于世界每美元GDP消耗的平均能源。当前,由于缺乏信息,业务服务的能源需求被计算为“ 0”。我们的默认假设是将它们视为“平均”。结果是很难衡量能源服务的总业务需求,“范围4”能源使用或温室气体影响评估。计算已记录的能源使用量并打折未记录的能源使用量,将劳动强度大的工作误解为高效节能。结果证实了霍尔等人的类似发现。在1981年[1]。我们使用详尽的搜索来查找企业整体运营所需的内容,跟踪内部业务关系而不是能源数据,将其自然物理边界定位为工作单位,因此将企业定义为物理而非科学研究的统计主题。另请参见在线资源材料和说明[2]。

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