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Analyses of Energy Infrastructure Serving a Dense Urban Area: Opportunities and Challenges for Wind Power, Building Systems and Distributed Generation.

机译:为稠密城市地区服务的能源基础设施分析:风电,建筑系统和分布式发电的机遇与挑战。

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摘要

This dissertation describes methodologies for evaluating a set of anticipated and recommended energy infrastructure changes essential to achieving deep greenhouse gas emissions reductions in a dense urban area: Deep penetration of grid-connected wind power, widespread adoption of electric heat pumps, multiple potential services from extensive deployment of distributed generation, and increasing focus on auxiliary energy in heating and cooling systems as cities continue to grow in population and height. The focus of the research presented here was New York City and the surrounding New York State electricity supply infrastructure. After developing a wind power model based on an NREL model wind data set, a linear program model showed that after passing a low-curtailment threshold of 10 GW, energy-related wind power curtailment is driven largely by continuous operation of baseload generation and misalignment of winter wind power peaks and existing summer electricity demand peaks. Separate analyses showed the potential for increase wind-generated electricity utilization through increased use of heat pumps in New York City.;A suite of models was developed to assess the zonal effects in New York City of deep statewide penetration of wind power and widespread adoption of electric heat pumps in New York City. New York City was found to have highly fluctuating net loads in deep wind penetration scenarios. Further, with large amounts of existing space heating demand replaced by heat pumps, the increased winter electricity demand peaks occurred infrequently enough that the additional generation capacity required to meet those loads would have a capacity factor well less than 1%. Small-scale, natural gas-fueled internal combustion engines deployed as distributed generation were shown to improve the ability of the system to respond to load fluctuations, to be a more economical option than new large centralized generators at the low capacity factor, and to reduce overall system gas usage due to mitigating part-load effects and startup fuel requirements. This distributed generation, which could in reality also include combined heat and power systems as well as battery storage standing alone, connected to rooftop solar or in electric vehicles, also has potential system resilience benefits.;The last research effort described here included long-term monitoring of a high-rise mixed use building's hydronic system before and after a retrofit of hydraulic equipment. Significant annual reductions of 40% energy usage for pumping were computed, primarily due to part-load flow control effects. Analysis of the monitoring data, as well as computations related to theoretical performance of hydraulic networks, showed that this approach also has potential to reduce peak loads, particularly in high-rise buildings.
机译:本文描述了评估一组预期和推荐的能源基础设施变更的方法,这些变更对于在稠密的城市地区实现深层温室气体减排是必不可少的:并网风能的深度渗透,电热泵的广泛采用,广泛提供的多种潜在服务随着城市人口和身高的不断增长,分布式发电的部署以及对供暖和制冷系统中辅助能源的关注日益增加。这里介绍的研究重点是纽约市和周围的纽约州电力供应基础设施。在基于NREL模型风数据集建立风电模型后,线性程序模型显示,在通过10 GW的低限流阈值后,与能源相关的风电限流主要是由持续运行的基本负荷生成和风速失调引起的。冬季风力发电高峰和现有夏季电力需求高峰。单独的分析表明,通过增加纽约市热泵的使用,有可能增加风力发电的利用。;开发了一套模型来评估纽约州在全州范围内广泛普及的风力发电和广泛采用的风能的区域效应。纽约市的电动热泵。发现纽约市在深风穿透情况下的净负荷波动很大。此外,随着大量现有空间供暖需求被热泵取代,冬季电力需求高峰的出现很少发生,以至于满足这些负荷所需的额外发电能力将远远小于1%。事实证明,部署为分布式发电的小型天然气燃料内燃机提高了系统应对负载波动的能力,在容量系数低的情况下比新型大型集中式发电机更经济,并降低了能耗。由于减轻了部分负荷影响和启动燃料需求,因此整个系统的天然气使用量有所减少。这种分布式发电实际上可能还包括热电联产系统以及单独连接到屋顶太阳能或电动汽车中的电池存储,还具有潜在的系统弹性优势。在改造液压设备之前和之后,对高层混合用途建筑物的水力系统进行监控。据计算,主要由于部分负载流量控制的影响,每年可节省40%的抽水能耗。对监控数据的分析以及与液压网络理论性能有关的计算表明,这种方法也有降低峰值负荷的潜力,尤其是在高层建筑中。

著录项

  • 作者

    Waite, Michael.;

  • 作者单位

    Columbia University.;

  • 授予单位 Columbia University.;
  • 学科 Mechanical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 303 p.
  • 总页数 303
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:48:16

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