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DEEPWATER PIPELINES: DESIGN, INSTALLATION AND TESTING

机译:深水管道:设计,安装和测试

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Hydrocarbons are the major source of energy in the world. While the global energy demand continues to rise, the shallow water hydrocarbon reserves currently under production are getting exhausted. This has encouraged all major E&P (Exploration & Production) companies around the world to look towards exploration and development of newer deepwater offshore reserves, hitherto largely left untouched. Furthermore, gas reserves-rich nations are also showing a keen interest in exploring new gas markets to boost their exports and, in the process, provide a solution to the energy scarcity of other parts of the world. The two factors mentioned above- the need for newer energy reserves and the urge to tap new energy markets- coupled with the safety, reliability, and cost-effectiveness of pipelines have contributed to the growing number of deepwater gas pipeline projects being executed around the world. "Deepwater Pipelines" per se is not a new concept. Many deepwater pipelines have already been installed in different parts of the world. However, for the Indian energy sector, this is a relatively new development, with the exception of KG basin deepwater pipelines. The Indian government's HELP (Hydrocarbon Exploration and Leasing Policy) and proposed trans-national submarine gas pipelines are likely to serve as the harbingers of future deepwater pipeline projects in Indian oil & gas sector. Although the technical and codal requirements for deepwater pipelines are the same as that applicable for any shallow water offshore pipeline, there are a few nuances that must be considered extremely important to successfully implement any deepwater pipeline project. This paper elucidates the deepwater pipeline considerations such as pipeline route selection, flow assurance, line pipe material & wall thickness selection, pipeline installation analysis, seabed intervention techniques, alternative integrity validation (AIV) etc.
机译:碳氢化合物是世界上能源的主要来源。虽然全球能源需求持续上升,但目前正在生产的浅水碳氢化合物储量始终疲惫不堪。这鼓励了世界各地的所有主要E&P(勘探和生产)公司来探讨迄今为止,迄今为止,迄今为止,迄今为止,迄今为止,迄今为止正在探索新的深水海上储备。此外,富含天然气储备的国家也表现出对探索新的天然气市场来提振其出口的敏锐兴趣,并且在该过程中提供了解决世界其他地区的能源稀缺的解决方案。上述两个因素 - 需要更新的能量储备和挖掘新能源市场的冲动 - 加上管道的安全,可靠性和成本效益,这促成了越来越多的深水天然气管道项目正在世界各地正在执行。 “深水管道”本身不是一个新的概念。许多深水管道已经安装在世界不同的地区。然而,对于印度能源部门来说,这是一个相对较新的发展,除了KG盆地深水管道之外。印度政府的帮助(碳氢化合物勘探和租赁政策)和拟议的跨国潜艇燃气管道可能是印度石油和天然气部门未来深水管道项​​目的先兆。虽然对深水管道的技术和编码要求与适用于任何浅水海上管道的要求相同,但有一些细微差别必须被认为是成功实施任何深水管道项​​目的非常重要。本文阐明了深水管道考虑因素,如管道路线选择,流量保证,线管材料和壁厚选择,管道安装分析,海底干预技术,替代完整性验证(AIV)等。

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