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Sustainable enhancement of district heating and cooling configurations by combining thermal energy storage and life cycle assessment

机译:通过结合热能储存和生命周期评估,可持续增强区供暖和冷却配置

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摘要

District heating and cooling systems are designed and optimized to respond to the latest challenges of reducing energy demands while fulfilling comfort standards. Thermal energy storage (TES) with phase change materials can be employed to reduce the energy demands of buildings. This study considers a residential district located in Spain, where a general framework has been established to identify optimal combinations of energy conversion, delivery technologies, and operating rules. The Life Cycle Assessment (LCA) methodology was implemented within a mathematical model, and the objective function considered the minimization of environmental loads. Two environmental impact assessment methods were applied within the LCA methodology: IPCC 2013 GWP lOOy and ReCiPe. Four optimal configurations were considered: a reference system (gas boiler and split-type air conditioners) and then three TES-based systems: one sensible (STES, water) and two latent (LTES1-paraffin emulsion and LTES2-sodium acetate trihydrate). Hourly environmental loads associated with electricity imports from the national grid were available. The conventional energy system always presented the worst performance from an environmental viewpoint, being penalized by the high consumption of natural gas. Regarding carbon emissions, LTES1 showed the lowest emissions, followed by STES and LTES2. Reductions in energy demands compensated the impact of paraffin, and results of STES are strongly dependent on tank design. However, considering the ReCiPe method, STES presented the lowest loads, followed by LTES1 and LTES2. Overall impacts of LTES1 with paraffin are higher than STES with water, mainly due to the paraffin and the high volume required.
机译:区域供热和冷却系统是设计和优化的,以应对降低能源需求的最新挑战,同时满足舒适标准。可以采用相变材料的热能存储(TES)来降低建筑物的能源需求。本研究考虑了位于西班牙的住宅区,已经建立了一般框架,以确定能源转换,交付技术和操作规则的最佳组合。在数学模型中实施生命周期评估(LCA)方法,目标函数被认为是最小化环境载荷。在LCA方法中应用了两个环境影响评估方法:IPCC 2013 GWP LOOY和配方。考虑了四种最佳配置:参考系统(燃气锅炉和分裂式空调),然后是三个基于TES的系统:一种明智(术术,水)和两个潜伏(LTE1-石蜡乳液和LTES1-石蜡和LTES2-醋酸钠三水合物)。提供了与来自国家网格的电力进口相关的每小时环境载荷。传统的能量系统总是从环境观点呈现最糟糕的性能,受到天然气的高消耗来惩罚。关于碳排放,LTES1显示出最低排放,其次是术术和LTES2。减少能源需求补偿石蜡的影响,术术的结果强烈依赖于坦克设计。然而,考虑配方方法,鼠标呈现最低负载,然后是LTES1和LTES2。 LTES1与石蜡的总体影响高于水的脊髓,主要是由于石蜡和所需的高容量。

著录项

  • 来源
    《Clean technologies and environmental policy》 |2021年第3期|857-867|共11页
  • 作者单位

    University Center of Defense Ctra. Huesca s/n 50090 Zaragoza Spain Thermal Engineering and Energy Systems Group (GITSE) Aragon Institute for Engineering Research (I3A) University of Zaragoza Agustin Betancourt Building C/Maria de Luna 3 50018 Zaragoza Spain;

    Department of Renewable Energy Engineering Federal University of Paraiba Campus I. Cidade Universitaria s/n - Castelo Branco Joao Pessoa Paraiba 58051-970 Brazil;

    University Center of Defense Ctra. Huesca s/n 50090 Zaragoza Spain Thermal Engineering and Energy Systems Group (GITSE) Aragon Institute for Engineering Research (I3A) University of Zaragoza Agustin Betancourt Building C/Maria de Luna 3 50018 Zaragoza Spain;

    Thermal Engineering and Energy Systems Group (GITSE) Aragon Institute for Engineering Research (I3A) University of Zaragoza Agustin Betancourt Building C/Maria de Luna 3 50018 Zaragoza Spain;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Life cycle assessment; Phase change materials; Thermal energy storage; District heating and cooling; Sustainable enhancement;

    机译:生命周期评估;相变材料;热能储存;地区加热和冷却;可持续增强;
  • 入库时间 2022-08-18 23:32:11

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