Journal Article
Study on Single-Point Mooring Cables for Stereoscopic Environmental Monitoring in the Natural Gas Hydrate Area of the South China Sea
Yifei Dong; Shuangling Dai; Qianyong Liang; Jiawang Chen; Haojie Si; Binbin Guo; Andi Xu; Dongqing Ma; Zhigang Wang; Danyi Su; Xuemin Wu; Yan Sheng; Zhifeng Zhang; Feng Zhang; Yuan Lin
Journal of Marine Science and Engineering · Vol. 14, Issue 4 · pp. 348 · 2026
Abstract
Safe exploitation of the marine natural gas hydrate (NGH) resource is essential to meet the demand of the future energy requirement. To enable real-time monitoring of methane leakage during the production test of NGH, an ocean stereoscopic monitoring system based on underwater single-point mooring structure is developed, which supports in situ monitoring of marine environment at the sea-air interface, the euphotic zone, and the seabed boundary layer. Numerical simulations were conducted to evaluate the effect of mooring configuration, cable lengths, and buoyancy settings on the mooring stability of the system against the current and waves. Based on the simulation result, an optimized segmented inverse-catenary mooring configuration is developed to achieve a balance between the performance and cost. The designed submersible relay buoy isolates the upper dynamic S-shaped cable from the lower static straight electro-optical-mechanical (EOM) cable, thereby improving system stability. The monitoring system based on the optimized mooring structure is successfully deployed at the NGH zone in the northern South China Sea at the water depth of 1330 m confirming its working stability in harsh sea conditions.