【24h】

MATERIALS SELECTION AND PERFORMANCE CRITERIA FOR HYDROGEN PIPELINE TRANSMISSION

机译:氢气管道传输的材料选择和性能标准

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

As a part of worldwide Hydrogen Fuel Initiatives, hydrogen fuel cell technology (US DOE 2003) is being championed as a viable resource while at the same time recognizing that the production, transmission and end use distribution of hydrogen gas will be the most critical elements. The application of fuel cell technology when fully developed is expected to dominate power and auto industries worldwide. As the demand for hydrogen increases, issues related to the safe design and economic construction of hydrogen supply and transportation infrastructure will emerge as critical path items requiring serious consideration. One of the barriers for viable hydrogen economy is that the current guidelines in various codes and standards and regulations are not adequate for the required service conditions for hydrogen transportation and delivery. Thus is the requirement for Multi-Year Research, Development and Demonstration Plan (MYPP) for the development of codes and standards to support hydrogen economy, (US DOE, 2002 & 2003). Although for many decades within the chemical industry, hydrogen in various fcrms has been transported by various modes, including pipelines, tank cars, mobile re-chargers etc., the service conditions and transport requirements are significantly different when developing more economical methods for large volume hydrogen transportation. As industry moves quickly to implement an economical and effective pipeline infrastructure, either with new construction or by converting existing pipeline, understanding of material selection and performance, joining/welding, and establishing consensus for codes and standards are critical. Additionally, government regulations must be developed to ensure acceptable safety levels and public acceptance. The purpose of this paper is to identify current materials used in hydrogen service, their applicability and limitations, and to develop materials selection and performance criteria for designing safe hydrogen pipeline transmission infrastructure to support the development of hydrogen codes and standards, initiated by ASME (2003). Additionally, some critical future materials research areas are identified. In particular, this paper will give attention to higher strength pipeline steels (i.e. API 5LX Grade 65 and higher), quenched and tempered steels, stainless steels, as well as those alloy steels used for pressure vessels and piping. Recent development of composite reinforced line pipe (CRLP~(TM)) has the potential as viable alternative to use of very high strength thermo-mechanically treated line pipe steels, but many issues related design parameters, construction and maintenance require research and development.
机译:作为全球氢燃料计划的一部分,氢燃料电池技术(美国能源部,2003年)被提倡为一种可行的资源,与此同时,人们认识到氢气的生产,传输和最终用途分配将是最关键的要素。燃料电池技术的全面发展有望在全球电力和汽车工业中占据主导地位。随着对氢的需求增加,与氢供应和运输基础设施的安全设计和经济构造有关的问题将作为需要认真考虑的关键途径出现。氢经济可行的障碍之一是,各种规范,标准和法规中的现行指南不足以满足氢运输和运输所需的服务条件。因此,需要制定多年研究,开发和示范计划(MYPP),以制定支持氢经济的法规和标准(美国能源部,2002年和2003年)。尽管在化学工业中数十年来,各种形式的氢已经通过各种方式运输,包括管道,罐车,移动充电器等,但在开发更经济的大容量方法时,服务条件和运输要求却大不相同。氢气运输。随着行业迅速采取行动,通过新建或转换现有管道来实施经济有效的管道基础设施,了解材料选择和性能,连接/焊接以及建立规范和标准的共识至关重要。此外,必须制定政府法规以确保可接受的安全级别和公众接受度。本文的目的是确定氢服务中使用的当前材料,其适用性和局限性,并开发材料选择和性能标准,以设计安全的氢气管道传输基础设施,以支持由ASME(2003)发起的氢法规和标准的制定。 )。此外,确定了一些重要的未来材料研究领域。特别是,本文将关注高强度管道钢(即API 5LX 65级及更高),调质钢,不锈钢以及用于压力容器和管道的合金钢。复合增强管线管(CRLP〜)的最新开发有潜力替代使用非常高强度的热机械处理的管线管钢,但与设计参数,构造和维护有关的许多问题都需要进行研究和开发。

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