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Development of an integrated energy system for smart communities

机译:开发智能社区的综合能源系统

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摘要

This paper introduces a newly developed integrated multigeneration energy system designed for a smart community. The system constitutes of various renewable energy sources, including solar and wind farms, and a quintuple geothermal system with reinjection. The system meets the demand and provides the main commodities of a small city with 5000 houses for their electricity, space heating, domestic hot water, and fresh water. The system is analyzed both energetically and exergetically using thermodynamic principles. The overall energy and exergy efficiencies of the proposed system are found to be 81.3% and 84.6% respectively. In addition, the energy and exergy efficiencies of the PVT system are 57.9% and 49.2%, respectively. The total electricity production is evaluated at 430 MW, while the capacity for domestic hot water is 20 MW. District heating is incorporated into this system at a capacity of 50 MW. The energy and exergy efficiencies of the geothermal system are found to be 27.6% and 35.7% respectively. Within the organic Rankine cycle, the exergy destruction at the boiler and the condenser add up to 15.8 MW, which makes up 94% of the total exergy destruction of this cycle. Moreover, a number of parametric studies are conducted to evaluate the level of influence that key parameters have on each system and consequently the overall system performance.
机译:本文介绍了专为智能社区设计的新开发的集成多粒度能源系统。该系统构成了各种可再生能源,包括太阳能和风电场,以及再次再注面的Quintuple地热系统。该系统符合需求,并为小城市的主要商品提供有5000所房屋,供电,空间加热,国内热水和淡水。使用热力学原理,在高端和高端分析系统。拟议体系的整体能源和漏洞效率分别为81.3%和84.6%。此外,PVT系统的能量和漏极效率分别为57.9%和49.2%。总电力生产在430兆瓦评估,而国产热水的产物是20兆瓦。区供暖以50兆瓦的容量纳入本系统。地热系统的能量和漏洞效率分别为27.6%和35.7%。在有机朗肯循环中,锅炉和冷凝器的高达破坏增加了15.8兆瓦,占该循环总爆破的总爆破的94%。此外,进行了许多参数研究以评估关键参数对每个系统的影响水平,并因此进行整体系统性能。

著录项

  • 来源
    《Energy》 |2020年第2期|117683.1-117683.15|共15页
  • 作者单位

    Clean Energy Research Laboratory (CERL) Faculty of Engineering and Applied Science University of Ontario Institute of Technology 2000 Simcoe Street North Oshawa Ontario L1H 7K4 Canada;

    Clean Energy Research Laboratory (CERL) Faculty of Engineering and Applied Science University of Ontario Institute of Technology 2000 Simcoe Street North Oshawa Ontario L1H 7K4 Canada;

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

    Smart Communities; Sustainable Energy; Exergy; Efficiency; Renewable Energy; District Heating;

    机译:智能社区;可持续能源;obergy;效率;再生能源;区域供热;

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