For the pioneered shipboard automated core-transmission system (ACTS) on the ocean drillship Dream, the structural integrity and operational reliability of the storage rack subsystem are critical to core logistics efficiency. The shipboard subsystem module experiences pronounced quasi-static inertial actions associated with the heels and trims under sea-states conditions. Uneven or eccentric loading can shift the inertial resultant off the primary load path, increasing the mechanical property demand at critical connection nodes. More importantly, prevailing codes remain largely rooted in land-based seismic practice, leaving full-scale validation under attitude-induced marine actions distinctly limited. Aiming to fill this gap, this study proposes an integrated design and verification framework enabled by an in-house developed full-scale controllable tilting platform, together with a companion finite-element model and a purpose-built measurement and monitoring system. These provide a validation of both hot-spot demand and global load paths for a representative subsystem module. Representative operational and extreme attitudes derived from voyage statistics are imposed consistently in both simulations and tests. Balanced and eccentric loading layouts are used to characterise the baseline demand and assess structural sensitivity under torque and bending–torsion coupling. A monitoring test is employed to extract response signatures at critical connection nodes, track evolution of hot spots and validate predictions to demonstrate engineering applicability. The framework provides supports for design verification and performance management of a shipboard subsystem.
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Research Article|
September 30 2026
Shipboard core-storage platform for drillships: design, verification and field validation
Chen Hu;
Chen Hu
School of Engineering,
China University of Geosciences
, Wuhan, China
; National Center for International Research on Deep Earth Drilling and Resource Development, Wuhan, China
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Yudan Wang;
Yudan Wang
School of Mechanical Engineering and Electronic Information,
China University of Geosciences
, Wuhan, China
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Chao Gan;
Chao Gan
School of Automation,
China University of Geosciences
, Wuhan, China
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Hong Tian;
Hong Tian
School of Engineering,
China University of Geosciences
, Wuhan, China
; National Center for International Research on Deep Earth Drilling and Resource Development, Wuhan, China
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Wenjia Ou;
Wenjia Ou
School of Engineering,
China University of Geosciences
, Wuhan, China
; National Center for International Research on Deep Earth Drilling and Resource Development, Wuhan, China
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Keliang Li;
Keliang Li
Guangzhou Marine Geological Survey
, Guangzhou, China
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Qingyin He;
Qingyin He
Guangzhou Marine Geological Survey
, Guangzhou, China
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Xianfeng Yin;
Xianfeng Yin
Guangzhou Marine Geological Survey
, Guangzhou, China
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Liang Yu;
Liang Yu
Guangzhou Marine Geological Survey
, Guangzhou, China
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Yang Zhou;
Yang Zhou
Guangzhou Marine Geological Survey
, Guangzhou, China
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Yanhua Luo;
Yanhua Luo
CSSC Huangpu Wenchong Shipbuilding Company Limited
, Guangzhou, China
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Xiaohu Li;
Xiaohu Li
CSSC Huangpu Wenchong Shipbuilding Company Limited
, Guangzhou, China
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Yong Du;
Yong Du
Guangzhou Branch,
China Classification Society
, Guangzhou, China
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Guojun Wen;
Guojun Wen
School of Mechanical Engineering and Electronic Information,
China University of Geosciences
, Wuhan, China
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Yunjun Li;
Yunjun Li
CSSC Huangpu Wenchong Shipbuilding Company Limited
, Guangzhou, China
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Fulong Ning
School of Mechanical Engineering and Electronic Information,
China University of Geosciences
, Wuhan, China
; National Center for International Research on Deep Earth Drilling and Resource Development, Wuhan, China
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Publisher: Emerald Publishing
Received:
December 17 2025
Accepted:
March 24 2026
Online ISSN: 1751-7737
Print ISSN: 1741-7597
Funding
Funding Group:
- Award Group:
- Funder(s): Key Programme of Marine Economy Development (Six Marine Industries) Special Foundation of Department of Natural Resources of Guangdong Province
- Award Id(s): GDNRC[2023]31
- Funder(s):
- Funding Statement(s): This work was supported by the Key Programme of Marine Economy Development (Six Marine Industries) Special Foundation of Department of Natural Resources of Guangdong Province, GDNRC[2023]31.
© 2026 Emerald Publishing Limited
2026
Emerald Publishing Limited
Licensed re-use rights only
Maritime Engineering 1–26.
Article history
Received:
December 17 2025
Accepted:
March 24 2026
Citation
Hu C, Wang Y, Gan C, Tian H, Ou W, Li K, He Q, Yin X, Yu L, Zhou Y, Luo Y, Li X, Du Y, Wen G, Li Y, Ning F (2026;), "Shipboard core-storage platform for drillships: design, verification and field validation". Maritime Engineering, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1680/jmaen.25.01915
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