首页> 外文会议>International conference on fuel cell science, engineering, and technology;FuelCell2010 >THE ROLE OF REMOTE MONITORING IN PROMOTING INCREASED ADOPTION OF MISSION CRITICAL FUEL CELLS
【24h】

THE ROLE OF REMOTE MONITORING IN PROMOTING INCREASED ADOPTION OF MISSION CRITICAL FUEL CELLS

机译:远程监测在促进关键性燃料电池采用中的作用

获取原文

摘要

Fuel cells are seen by the general public as a new and potentially risky energy source, despite their long history of reliable operation. Fuel cells have been applied in critical applications since their deployment in NASA's Gemini missions in the mid-1960's. They are still being used in today's space shuttles to provide electrical power and drinking water. Over the past decade hundreds of stationary systems have been installed in commercial applications for primary, backup and supplemental power. To promote a better understanding of the benefits of fuel cells, a wider dissemination of real world performance data is needed to show the efficiency, reliability and economic reality of fuel cells.Fuel cell performance is of special interest to the mission critical data center industry, which is slowly considering blending conventional and alternative power sources. Fuel cells are a cleaner and more efficient alternative to grid-supplied electricity in addition to being a viable alternative to batteries and diesel generators for backup power. In areas with poor grid reliability or other power quality issues, fuel cells can be used as the primary power source to provide high quality prime power while the grid provides backup and supplemental power. Waste heat from the fuel cells may be captured and used for space heating or hot water production, or used in absorption chillers to provide air-conditioning for server rooms. With a well-designed heat recovery system, the overall combined heat and power efficiency of a fuel cell installation can approach 90%.This paper will discuss the implementation and applications of the web-based fuel cell monitoring systemcurrently being deployed across Connecticut to promote fuel cell technology awareness and highlight their economic benefits. This monitoring system is being used as a proof-of-concept demonstration that is expected to drive technology adoption in the very competitive and critical private sector data center industry. The monitoring system is already providing publicly accessible data on fuel cell performance via the Internet, and can be used to analyze real-world fuel cell performance data from a wide variety of applications as the system is expanded across the state.
机译:尽管燃料电池可靠的运行已有很长的历史,但仍被普通大众视为一种新的且可能具有风险的能源。自从1960年代中期在NASA的Gemini任务中部署燃料电池以来,燃料电池就已应用于关键应用中。它们在当今的航天飞机中仍用于提供电力和饮用水。在过去的十年中,已经在商业应用中安装了数百个用于主电源,备用电源和辅助电源的固定系统。为了更好地理解燃料电池的好处,需要更广泛地传播现实世界的性能数据,以显示燃料电池的效率,可靠性和经济性。 燃料电池的性能对关键任务数据中心行业特别感兴趣,该行业正在慢慢考虑将常规电源和替代电源混合使用。燃料电池不仅可以替代电池和柴油发电机作为备用电源,而且是电网供电的更清洁,更高效的替代品。在电网可靠性差或其他电能质量问题的地区,燃料电池可以用作提供高质量主电源的主要电源,而电网可以提供备用和补充电源。来自燃料电池的废热可被收集起来并用于空间供暖或热水生产,或用于吸收式制冷机以为服务器机房提供空调。通过精心设计的热回收系统,燃料电池装置的整体热效率和功率效率可接近90%。 本文将讨论基于Web的燃料电池监控系统的实现和应用 目前正在康涅狄格州各地部署,以提高人们对燃料电池技术的认识并突出其经济利益。该监视系统被用作概念验证演示,有望在竞争激烈且至关重要的私营部门数据中心行业中推动技术的采用。该监控系统已经可以通过互联网提供有关燃料电池性能的公开访问数据,并且随着系统在整个州范围内的扩展,该监控系统可用于分析来自各种应用程序的实际燃料电池性能数据。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号