CCCC, which deeply cultivates the energy infrastructure market in the Middle East, has achieved a key breakthrough in the high-end offshore engineering field overseas. The Oman OQ fuel reserve project undertaken by it has successfully completed the construction of core equipment, filling the technical gaps of the enterprise and building a solid energy security barrier for the local area.

Overseas benchmark projects landing
On August 30, 2026, the construction of the single point mooring system for the Oman OQ strategic fuel reserve project undertaken by CCCC was completed. This project is CCCC's first EPC project in the oil and gas field, with a total investment of 222 million US dollars and a construction period of 3 years. It covers multiple supporting projects such as single point mooring systems, subsea pipelines, and onshore storage tanks. After the completion of the project, it can ensure 60 days of emergency operation needs in the Musandam area of Oman, effectively respond to various energy supply crises, and is a core supporting project of Oman's national energy strategy.

Fill the gap in core technology
As a floating dock at sea, the single point mooring system is suitable for complex marine conditions and is a core key equipment for offshore oil and gas development. However, its application in domestic engineering is relatively limited. The successful implementation of this project has filled the technical gap in the field of CCCC. The project team innovatively adopts a cloud based collaborative online audit mode, relying on 3D model sharing and high-definition video transmission technology to conduct cloud based review of 15 core indicators. All parameters meet international marine engineering standards, and the audit efficiency is 40% higher than the traditional mode, demonstrating the hard core strength of domestic infrastructure. Keywords: breakthroughs in offshore technology, energy infrastructure in the Middle East

Expand the new track of going global
This technological breakthrough marks the official entry of domestic infrastructure state-owned enterprises into the high-end marine engineering field, achieving the transformation and upgrading of traditional infrastructure to the manufacturing of marine energy equipment. CCCC relies on its deep accumulation of large-scale structural prefabrication and complex construction conditions to achieve cross disciplinary technology integration and international standard adaptation. This project not only accumulates valuable experience for enterprises to deeply cultivate the high-end energy engineering market in the Middle East, but also helps China's offshore technology enter the global competitive stage, laying a solid foundation for the development of domestic offshore industry going global.Editor/Min Jing
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