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首页> 外文期刊>Journal of Industrial Ecology >Estimating Emissions from Electricity Generation Using Electricity Dispatch Models: The Importance of System Operating Constraints
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Estimating Emissions from Electricity Generation Using Electricity Dispatch Models: The Importance of System Operating Constraints

机译:使用电力调度模型估算发电排放:系统运行约束的重要性

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摘要

This article develops a modeling approach for estimating emissions (e.g., carbon dioxide) from nuclear, coal, natural gas, and hydropower generators in reaction to short-term changes to electricity demand. The modeling approach accounts for a set of operating constraints (OCs), including scheduled maintenance, forced outage, spinning reserves, fuel switching, seasonal output capacities, and seasonal hydro resource availability. It is found that these OCs are important to achieve reasonable estimates of electricity production by fuel type as well as associated emissions. This conclusion follows from an analysis of electric power generation by networks of power plants in Texas and New York in 2004 and 2005. The inputs to the model with operating constraints (OC model) developed in this article include hourly electricity demand, fuel costs, a list of power plants in the network, their basic generation characteristics, and the set of OCs developed in this article. Given these inputs, the OC model estimates the hourly amount of electricity generation by each power plant in the network, which leads to estimates of marginal resource consumption and emissions. Our central result is that historical annual and monthly generation by fuel type and efficiency are well estimated by the OC model and that the exclusion of OCs leads to poor estimates. This work can be combined with emerging work on wind and solar generation to provide a complete picture of contemporary grid dispatch and associated emissions.
机译:本文开发了一种建模方法,用于估算核电,煤炭,天然气和水力发电站对短期电力需求变化做出反应的排放量(例如二氧化碳)。建模方法考虑了一组运行约束(OC),包括计划维护,强制停运,动车储备,燃料转换,季节性输出容量和季节性水资源可用性。已经发现,这些OC对实现按燃料类型以及相关排放量合理估算电力生产非常重要。该结论来自对2004年和2005年德克萨斯州和纽约州发电厂网络发电的分析。本文开发的带有运行约束的模型(OC模型)的输入包括每小时的用电量,燃料成本,网络中的发电厂列表,它们的基本发电特性以及本文开发的OC组。有了这些输入,OC模型可以估算网络中每个电厂的每小时发电量,从而可以估算出边际资源消耗和排放量。我们的主要结果是,通过OC模型可以很好地估算出按燃料类型和效率计算的历史年度和月度发电量,而排除OC会导致估算不佳。这项工作可以与新兴的风能和太阳能工作结合起来,以提供当代电网调度和相关排放的完整情况。

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