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Ship-based CO2 Injection into Subseabed Geological Formations using a Flexible Riser Pipe Pickup System

机译:使用柔性立管拾取系统将基于船舶的二氧化碳注射进入海底地质形成

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摘要

This report presents details of one aspect, namely, the flexible riser pipe pickup system, of a proposed ship-based carbon dioxide capture and storage (CCS) method. The liquefied CO2 (LCO2) to be sequestered is directly injected into subseabed geological formations through a flexible riser pipe using injection facilities contained onboard an LCO2 carrier ship. The flexible riser pipe remains on the seabed, one end attached to the injection wellhead, until the other end is hoisted up and connected to the (dynamic positioning system (DPS)-controlled) LCO2 carrier ship arriving at the ocean injection site. This proposed system has various advantages over the use of stationary sea surface structures for ship mooring and CO2 injection: i) no need for stationary sea surface structures, e.g., ship-mooring-buoy or platform; ii) simplifies ship handling, especially in rougher sea states; and iii) the flexible riser pipe can remain on the seabed in rough seas. Details of a pickup buoy system for retrieving the riser from the seabed and the structure of the flexible riser pipe are presented in this paper. The riser pickup system consists basically of shipboard equipment such as a coupling valve, crane, winches and A-frame and offshore equipment such as a pickup buoy, pickup float, messenger line, sinker and pickup wire rope. The flexible riser pipe, outer diameter of 309 mm, was designed with due consideration of the stresses encountered with repeated retrievals from the seabed.
机译:本报告提供了一个方面的细节,即柔性立管拾取系统,提出的船舶二氧化碳捕获和储存(CCS)方法。待隔离的液化二氧化碳(LCO2)通过使用喷射设施的柔性立管管直接注入海底地质构造中。柔性立管留在海底上,一端连接到注射井口,直到另一端悬挂并连接到(动态定位系统(DPS) - 控制)LCO2载体船到达海洋注射部位。这一提出的系统对船舶停泊和二氧化碳注射的固定海表面结构的使用具有各种优势:i)不需要固定海表面结构,例如船舶浮标或平台; ii)简化船舶处理,特别是在粗糙的海州;和iii)柔性立管管可以保留在汹涌的海洋海床上。本文提出了用于从海底检索立管和柔性立管管的结构的拾取浮标系统的细节。提升机拾取系统基本上由船上设备组成,如联接阀,起重机,绞车和框架和近海设备,如拾取浮标,拾取浮子,信使线,沉降片和拾取钢丝绳。柔性立管管,外径为309毫米,设计有适当考虑来自海底重复检索的应力。

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