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TOWARDS OPTIMIZING BUILDING ENERGY USE TO REDUCE ELECTRIC SYSTEM CARBON EMISSIONS

机译:致力于优化建筑能源的使用,以减少电气系统的碳排放

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In spite of heightened interest in anthropogenic climate change, little attention has been paid to optimizing a building's carbon emissions at the source. Most work in building efficiency has assumed that generating plant carbon emissions are constant at their long-term average values. This study sought to improve our understanding of the temporal variations in carbon emis-sions on a diurnal time scale and their relation to electric system dispatch and load in order to motivate future work in optimizing building operation to reduce carbon emissions. Hourly fossil fuel plant emissions and load data, available from the EPA, were used to characterize power system performance for four US locations (IL, NY, TX, and CA). The study had set out with a hypothesis hoping to find a simple relationship between electric system load and emissions. It was found that there is a significant correlation between increased system load and decreased emissions rates, yet this correlation is not easily defined. During high load con-ditions, emissions reductions are related to the increased use of gas generators, or may be related to operating plants at more ef-ficient part load ratios. The work conducted in this study shows that, while more complex than hoped for, there is indeed a strong relationship between electric system load and carbon emissions rates.
机译:尽管人们对人为气候变化的兴趣日益浓厚,但从源头上优化建筑物的碳排放却很少受到关注。建筑效率方面的大多数工作都假设工厂产生的碳排放量保持其长期平均值不变。这项研究试图增进我们对昼夜尺度上碳排放的时间变化及其与电力系统调度和负荷之间关系的理解,以激发未来在优化建筑运营以减少碳排放方面的工作。可从EPA获得的每小时化石燃料工厂的排放量和负荷数据用于表征美国四个地点(IL,NY,TX和CA)的电力系统性能。该研究提出了一个假设,希望找到电力系统负荷与排放之间的简单关系。已经发现,增加的系统负载和降低的排放率之间存在显着的相关性,但是这种相关性不容易定义。在高负荷条件下,排放量的减少与气体发生器的使用增加有关,或者可能与以更有效的部分负荷比运行的电厂有关。这项研究进行的工作表明,尽管比预期的要复杂,但电气系统负载与碳排放率之间确实存在着很强的关系。

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