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Can distributed generation offer substantial benefits in a Northeastern American context? A case study of small-scale renewable technologies using a life cycle methodology

机译:分布式发电能否在美国东北部地区提供巨大利益?使用生命周期方法的小型可再生技术案例研究

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Renewable distributed electricity generation can play a significant role in meeting today's energy policy goals, such as reducing greenhouse gas emissions, improving energy security, while adding supply to meet increasing energy demand. However, the exact potential benefits are still a matter of debate. The objective of this study is to evaluate the life cycle implications (environmental, economic and energy) of distributed generation (DG) technologies. A complementary objective is to compare the life cycle implications of DC technologies with the centralized electricity production representing the Northeastern American context. Environmental and energy implications are modeled according to the recommendations in the ISO 14040 standard and this, using different indicators: Human Health; Ecosystem Quality; Climate Change; Resources and Non-Renewable Energy Payback Ratio. Distinctly, economic implications are modeled using conventional life cycle costing. DG technologies include two types of grid-connected photovoltaic panels (3 kWp mono-crystalline and poly-crystalline) and three types of micro-wind turbines (1,10 and 30 kW) modeled for average, below average and above average climatic conditions in the province of Quebec (Canada). A sensitivity analysis was also performed using different scenarios of centralized energy systems based on average and marginal (short- and long-term) technology approaches. Results show the following. First, climatic conditions (i.e., geographic location) have a significant effect on the results for the environmental, economic and energy indicators. More specifically, it was shown that the 30 kW micro-wind turbine is the best technology for above average conditions, while 3 kWp poly-crystalline photovoltaic panels are preferable for below average conditions. Second, the assessed DG technologies do not show benefits in comparison to the centralized Quebec grid mix (average technology approach). On the other hand, the 30 kW micro-wind turbine shows a potential benefit as long as the Northeastern American electricity market is considered (i.e., oil and coal centralized technologies are affected for the short- and long-term marginal scenarios, respectively). Photovoltaic panels could also become more competitive if the acquisition cost decreased. In conclusion, DG utilization will represent an improvement over centralized electricity production in a Northeastern American context, with respect to the environmental, energy and economic indicators assessed, and under the appropriate conditions discussed (i.e., geographical locations and affected centralized electricity production scenarios).
机译:可再生的分布式发电可以在实现当今能源政策目标方面发挥重要作用,例如减少温室气体排放,提高能源安全性,同时增加供应以满足不断增长的能源需求。但是,确切的潜在利益仍是一个争论的问题。这项研究的目的是评估分布式发电(DG)技术的生命周期影响(环境,经济和能源)。一个补充目标是将直流技术的生命周期影响与代表东北美洲环境的集中电力生产进行比较。环境和能源影响根据ISO 14040标准中的建议进行建模,并使用不同的指标:生态系统质量;气候变化;资源和不可再生能源回收率。显然,经济影响是使用常规生命周期成本建模的。 DG技术包括两种类型的并网光伏面板(3 kWp单晶硅和多晶硅)和三种类型的微型风力涡轮机(1,10和30 kW),分别模拟了印度平均,低于平均和高于平均的气候条件魁北克省(加拿大)。还基于平均和边际(短期和长期)技术方法,使用集中式能源系统的不同方案进行了敏感性分析。结果显示如下。首先,气候条件(即地理位置)会对环境,经济和能源指标的结果产生重大影响。更具体地,已经表明,对于高于平均水平的条件,30 kW微型风力涡轮机是最佳技术,而对于低于平均水平的条件,优选3 kWp的多晶光伏面板。其次,与集中式魁北克网格混合(平均技术方法)相比,评估的DG技术没有显示出任何好处。另一方面,只要考虑到东北美国的电力市场(即分别针对短期和长期边际情景分别影响石油和煤炭集中化技术),则30 kW微型风力涡轮机就会显示出潜在的利益。如果购置成本降低,光伏面板也将变得更具竞争力。总之,在评估的环境,能源和经济指标方面以及在讨论的适当条件下(即地理位置和受影响的集中式电力生产情景),DG利用率将代表美国东北部地区集中式电力生产的改善。

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