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MASIP Pre commercial field trials

MASIP Pre commercial field trials
MASIP 商业前现场试验
批准号:
830264
负责人:
金额:
$114.68万
依托单位国家:
英国
项目类别:
Innovation Loans
财政年份:
2021
资助国家:
英国
项目状态:
已结题
起止时间:
2021 至 --

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中文摘要
翻译
可持续管道系统有限公司正在开发改变游戏规则的新技术(MASiP),用于管道基础设施的安装,该技术在管道制造过程中将分布式传感器集成到螺旋配置中,以提供本质上智能的管道。自动化移动制造系统可以将总安装时间减半,同时对管道安装成本产生相应的积极影响,将环境影响减半以上,并大大改善管道安装的物流。以这种方式建造的管道在远距离运输(和储存)大量能源(以气体或液体形式)方面发挥着重要作用,为净零HGV、火车以及一般天然气输送用途提供底层基础设施。通过在更高的压力下与氢一起使用这些材料,可以在能源结构中实现更低的碳强度。我们的螺旋缠绕光纤创新引入了实时连续监测的前景,为未来的管道网络提供了一个数字平台。该项目解决了陆上管道的巨大全球市场,市场研究估计,到2025年,陆上管道的市场规模将超过500亿美元。可以认为,传统的人工管道建设和完整性监测过程已不再可持续。可持续管道建设和监测技术的可用性将是引入氢气作为供暖和工业动力的能源载体的关键促成因素。如果没有广泛使用氢燃料,那么重型运输和工业过程以及家庭供暖都不太可能在2050年之前达到净零排放的气候法规。几个政府目标和行业目标(包括国家电网最近发布的《2020年未来能源情景》)都认识到这一点,这些目标旨在在未来几年内开发一些氢项目。这是一项真正具有颠覆性的技术,将在英国发展自己的供应链,为未来创造许多高技能工作岗位。该项目还在国际市场上提供了大规模的机会。该项目将侧重于将系统的现有元素集成到移动现场试验中,以开发和演示移动制造过程
英文摘要
SUSTAINABLE PIPELINE SYSTEMS LTD is developing game changing new technology (MASiP) for the installation of pipeline infrastructure that incorporates distributed sensors in a spiral configuration during manufacture of the pipe to provide an intrinsically intelligent pipe. An automated mobile manufacturing system offers to halve total installation time with commensurate positive impacts on installed pipeline cost, more than halve the environmental impact and greatly improve the logistics of pipeline installation.Pipelines constructed in this way have a major role to play to transport (and store) vast quantities of energy (in gas or liquid form) over large distances, delivering the underlying infrastructure for net zero HGV, Train as well as general gas transmission use. By using these at higher pressures with Hydrogen, a lower carbon intensity can be achieved in the energy mix. Our spiral wound optical fibre innovation introduces the prospect of real time continuous monitoring to provide a digital platform for the pipeline network of the future.The project addresses a huge global market for onshore pipelines which market research has estimated to exceed $50bn by 2025. It can be argued that the conventional manual pipeline construction and integrity monitoring processes are no longer sustainable. The availability of sustainable pipeline construction and monitoring technology will be a critical enabling factor in the introduction of hydrogen gas as an energy carrier for heating and industrial power. Without widespread hydrogen fuel then heavy transport and industrial processes as well as domestic heating are all unlikely to be able to meet net zero climate regulations even by 2050.This is recognised in several government targets and industry objectives (including National Grid's recently published Future Energy Scenarios 2020) which aim to develop a number of hydrogen projects over the next few years.This offers to be genuinely disruptive technology that will develop its own supply chain in the UK creating many highly skilled jobs for the future. The project also offers large scale opportunities in the international market place. This project will focus on the integration of existing elements of the system into a mobile field trial to develop and demonstrate the mobile manufacturing process
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