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Ontario energy supply network modeling, evaluation, and optimization of gas-power conversion and supply technologies

Ontario energy supply network modeling, evaluation, and optimization of gas-power conversion and supply technologies
安大略省能源供应网络建模、评估和天然气电力转换和供应技术优化
批准号:
451300-2013
负责人:
Gaber, Hossam
金额:
$2.35万
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2013
资助国家:
加拿大
项目状态:
已结题
起止时间:
2013-01-01 至 2014-12-31

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中文摘要
翻译
安大略正朝着整合电力和天然气供应网络的方向发展,以实现高性能的混合能源供应,满足电力、热力、燃料和水等区域能源需求,同时优化环境影响和总体成本。拟议项目的目标是设计和构建集成安大略能源模型的建模框架,用于使用该省LMP(位置边际定价)的IESO节点模型的更高级别聚合进行天然气和电力集成。它将为安大略的气电一体化提供有价值的见解,特别是对于电力到天然气的部署。拟议的建模将使用IESO节点提供安大略省电网的每小时模拟,这些节点包括Richview,阿蒂科坎,Pineportage和Thunderbay(西北),Andrews,峡谷和NPIroqfalls(北部),渥太华(TAOHSC),Saunders(多伦多),达林顿(Essa),BruceB,南蒂科克(西南),Beck 2(尼亚加拉)和兰顿(西部)。它将整合与马尼托巴、密歇根、纽约和魁北克的所有联系,并创建位于每个节点(核能、风能等)的聚合发电机对象。具有调度规则(例如,最小运行速率、可变调度等)。将为每个节点研究不同的叠加天然气基础设施,并在最西南的节点增加聚合天然气储存。此外,它将包括与横贯加拿大干线、尼亚加拉和安大略东部的萨尼亚和马塞勒斯页岩的主要天然气互连。此外,安大略模型将包括每个节点处的电力负荷和天然气负荷,具有聚合工业、商业和住宅或组合的层级,并且具有电力到天然气工厂技术的所有可能的模型库。拟议的安大略能源模型将根据历史数据进行验证,并用于预测2014-2015年安大略的能源需求。氢气生产和供应链将作为拟议能源模型的一部分进行评估,以与天然气选项进行比较,并根据基于生命周期的性能指标进行优化。地理信息系统数据分析将用于绘制到安大略负荷和地区的天然气-电力网络。
英文摘要
Ontario is moving toward integrating power and gas supply networks to achieve high performance hybrid energy supply to cover regional energy demands in terms of electricity, thermal, fuel, and water, supply technologies and scenarios while optimizing environmental impacts and overall costs. The objective of the proposed project is to design and build the modeling framework for an Integrated Ontario Energy Model for gas and power integration using a higher level aggregation of the IESO nodal model used for LMP (locational marginal pricing) in the province. It will provide valuable insights for gas-electric integration in Ontario, particularly for Power-to-Gas deployments. The proposed modeling will provide hourly simulation of Ontario energy grids using IESO nodes, which include Richview, Atikokan, Pineportage and Thunderbay (Northwest), Andrews, Canyon and NPIroqfalls (North), Ottawa (TAOHSC), Saunders (Toronto), Darlington (Essa), BruceB, Nanticoke (South West), Beck2 (Niagara) and Lambton (West). It will incorporate all interties with Manitoba, Michigan, NY and Quebec, and create aggregate generator objects located at each node (nuclear, wind, etc.) with dispatch rules(e.g. min run rate, variable dispatch, etc.). Different overlay gas infrastructures will be studied for each node and add aggregated gas storage at the Southwestern most node. In addition, it will incorporate major gas interconnections with the TransCanada mainline, Sarnia and Marcellus shale at Niagara and Eastern Ontario. Moreover, the Ontario model will include power loads and gas loads at each node with hierarchical levels of aggregation industrial, commercial and residential or a combination, and with all possible model libraries for Power-to-Gas plant technologies. The proposed Ontario energy model will be verified against historical data and used to predict the 2014-2015 Ontario energy demand. Hydrogen production and supply chains will be evaluated as part of the proposed energy model to compare with natural gas options and optimized based on lifecycle-based performance indicators. GIS data analysis will be used for gas-electricity grids as mapped to loads and regions in Ontario.
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会议论文
Design and Experiment of Resilient Hybrid Energy Systems for Interconnected and Smart Infrastructures
Planning, Control, and Optimization of Resilient Smart Energy Grids and Interconnected Micro Energy Grids
Intelligent Experience Retention System (IERS)
Intelligent Experience Retention System (IERS)
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