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Feasibility of polygeneration in energy supply systems for health-care facilities under the Italian climate and boundary conditions

机译:在意大利气候和边界条件下,在医疗机构能源供应系统中多联产的可行性

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This article investigates the opportunities of a multi-energy system in a hospital facility under the Italian climate and boundary conditions. One of the benchmarks for tertiary buildings constructed by the U.S. DOE (Department of Energy) to be used in association with the energy simulation software EnergyPlus was taken as a reference hospital. After importing that benchmark under the Italian climatic conditions (in the Turin, Florence and Naples locations) and determining the energy needs for heating energy, cooling energy and electricity, several polygeneration alternatives were presented. The reference configuration of the benchmark case study is based on a one-energy rationale (one energy carrier for each load), while the polygeneration alternatives (cogeneration, trigeneration and renewable) are based on a multi-energy rationale (variable energy carriers used in several converters to cover the same load with the maximum efficiency and reliability). By means of a multi-energy systems modeling framework, the scenarios that are most efficient or profitable were determined. Results show that renewable energy is far from covering the whole energy demand of a hospital, and that - given the actual Italian primary energy weighting factor for electricity, that is the amount of source energy required for the production of one unit of electricity in Italy - trigeneration can be feasible only from an economic point of view, and not from an energy point of view.
机译:本文研究了在意大利气候和边界条件下医院设施中多能量系统的机会。由美国能源部(DOE)建造并与能源模拟软件EnergyPlus结合使用的三级建筑的基准之一被视为参考医院。在意大利气候条件下(都灵,佛罗伦萨和那不勒斯所在地)导入该基准后,确定了供暖,制冷和电的能源需求之后,提出了几种多联产替代方案。基准案例研究的参考配置基于单能量原理(每个负载一个能量载体),而多联产替代方案(热电联产,三联产和可再生能源)基于多能量原理(用于发电的可变能量载体)。多个转换器以最大的效率和可靠性覆盖相同的负载)。通过多能源系统建模框架,确定了最有效或最有利可图的方案。结果表明,可再生能源远远不能满足医院的全部能源需求,而且-考虑到意大利实际的一次能源权重因素,即在意大利生产一单位电力所需的能源量-仅从经济角度看,三联发电是可行的,而从能源角度看,三联发电是不可行的。

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