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VERSATILE HEAT SOURCE FOR NUCLEAR GAS TURBINE AND HYDROGEN PRODUCTION FACILITY

机译:核燃料涡轮机和氢气生产设施的多功能热源

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Recent media articles about nuclear power renaissance are encouraging, but this controversial topic is far from being embraced by major industrial powers. The fact is, that within the next two to three decades or so most of the first generation US nuclear power plants, currently producing abort 20 percent of the nation's electrical power, will be near the end of their design lives. In addition to providing needed power, a major argument put forward for the introduction of next generation smaller and safer nuclear plants relates to the growing concern about greenhouse gas emission and global warming. However, overcoming public and institutional resistance to nuclear power remains a formidable endeavor, and in reality the introduction of new plants in sufficient numbers to significantly impact the market will not be realized for several decades. Clearly vision is needed to define the requirements &r new nuclear plants that will meet the needs of consumers by say the middle of the 21st century. Market forces will mandate changes in the energy supply sector, and to be in concert with environmental concerns new nuclear plants must have operational flexibility. In addition to economical electrical power, energy needs in the future could include hydrogen production in significant quantity (for fuel cells in the transportation and power sectors) and fresh water by desalination for urban, industrial and agricultural users. The High Temperature Reactor (HTR) has the capability to meet these projected needs. With an established technology base, and successful plant operation in Germany, the helium cooled pebble bed reactor (PBR) must be regarded as a leading second generation nuclear plant Operational versatility by virtue of its high temperature capability is assured, and high availability can be realized with its on-line refueling approach. While the multipurpose HTR may be several decades away from playing a significant role in the commercial market place, this paper emphasizes the need for technical planning today to establish a nuclear heat source adaptable to both a high efficiency helium closed cycle gas turbine and large scale hydrogen production facilities, thus extending the role of nuclear power beyond just the supply of electrical power.
机译:最近的媒体文章关于核电文艺复兴的令人鼓舞,但这种有争议的课题远未受到主要工业大国的接受。事实是,在未来两到三十年左右大多数第一代美国核电厂,目前生产中止全国电力的20%以内,将接近其设计寿命的终点。除了提供所需的权力之外,提出了引入下一代较小和更安全的核植物的主要论点涉及对温室气体排放和全球变暖的日益令人担忧。然而,克服核电公众和机构性仍然是一个艰巨的努力,并在现实中足够数量的显著影响市场推出的新厂房就无法实现了几十年。显然,需要眼光来定义需求&R新的核电厂将由发言权满足消费者的需求,在21世纪中叶。市场力量将授权能源供应部门的变化,并与环境问题一致新的核电站必须具有运行灵活性。除了经济的电功率,在未来的能源需求可以包括在用于城市,工业和农业用户显著量(用于在运输和电力部门燃料电池)和淡水通过脱盐制氢。高温反应器(HTR)具有满足这些预计的需求的能力。凭借德国的既定技术基地,厂房成功运行,氦气冷却卵石床反应器(PBR)必须被视为领先的第二代核电站运行多功能性,通过确保其高温能力,并且可以实现高可用性凭借其在线加油方法。虽然多用途HTR可能是几十年来从打在商业市场上一个显著的作用远,本文今天强调技术规划,需要建立一个核热源适应既是一个高效率的氦闭环循环燃气轮机和大型氢气生产设施,从而扩展了核电的作用,仅仅是电力供应。

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