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The Use of Cogeneration Systems in a Hospitiality Project

机译:热电联产系统在酒店项目中的使用

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摘要

Combined heat and power (CHP) systems are finding applications in commercial facilities through energy efficiency, reliability, and return on investment. CHP equipment can be a key element in a micro-grid for a facility or group of buildings in close proximity. The characteristics of a micro-grid system include energy generating equipment directly serving electricity-consuming equipment through on-site electrical distribution system. The robust nature of the on-site generating equipment typically determines if supplement energy from a grid source is required. Other examples of energy generating equipment found in micro-grids include generators, fuel cells, batteries, and renewables. The increasing use of micro-grids in the built environment can be attributed to the advancement of cogenerating technologies like CHP.CHP equipment is available in many sizes and design variations, but the premise amongst these features is the same. A fuel source is consumed by the CHP equipment and produces electricity and thermal energy. The most common fuel source used by CHP systems is natural gas. The most common product of a CHP system is electricity and hot water.This article will summarize the application of a CHP in a hospitality project. The discussion will focus on the strategy for designing the system and applying different types of cogeneration equipment. There will be a comparison of the performance of the CHP system compared to the performance of the traditional equipment. There will also be a study to show the benefit of producing electricity on-site, avoiding the losses associated the with transmission of the power.
机译:热电联产(CHP)系统通过能效,可靠性和投资回报率在商业设施中得到应用。热电联产设备可能是微电网中的关键元素,而该微电网中的设施或建筑物群非常接近。微电网系统的特征包括通过现场配电系统直接为耗电设备供电的发电设备。现场发电设备的坚固性通常确定是否需要来自电网的补充能源。在微电网中发现的能源产生设备的其他示例包括发电机,燃料电池,电池和可再生能源。在建筑环境中使用微电网的原因可以归因于热电联产等热电联产技术的进步。 r nCHP设备有多种尺寸和设计变化,但前提是这些功能相同。 CHP设备消耗燃料源,并产生电能和热能。热电联产系统使用的最常见的燃料来源是天然气。 CHP系统最常见的产品是电力和热水。 r n本文将总结CHP在酒店项目中的应用。讨论将集中在设计系统和应用不同类型的热电联产设备的策略上。将CHP系统的性能与传统设备的性能进行比较。还将进行一项研究,以显示在现场发电的好处,避免与电​​力传输相关的损失。

著录项

  • 来源
    《Energy Engineering》 |2017年第6期|57-6669-71|共13页
  • 作者

    Rodney V. Oathout;

  • 作者单位
  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 03:55:40

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