Long-term life stress mapping algorithm of the deep-sea pressurized spherical shell based on digital-twin technology
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X. Gu | Yanqing Li | Ji Yao | Xueliang Wang | C. Ye | Guoqi Wu
[1] A. Kana,et al. Digital twin for ship life-cycle: A critical systematic review , 2023, Ocean Engineering.
[2] Fang Wang,et al. Digital twin real time monitoring method of turbine blade performance based on numerical simulation , 2022, Ocean Engineering.
[3] L. Nalpantidis,et al. Machine learning enhancement of manoeuvring prediction for ship Digital Twin using full-scale recordings , 2022, Ocean Engineering.
[4] Fang Wang,et al. Effect of Temperature and Nonlinearity of PMMA Material in the Design of Observation Windows for a Full Ocean Depth Manned Submersible , 2019, Marine Technology Society Journal.
[5] Wenhua Wu,et al. Development and Sensing Properties Study of Underwater Assembled Water Depth-Inclination Sensors for a Multi-Component Mooring System, Using a Self-Contained Technique , 2016, Sensors.
[6] Ke Wang,et al. A simplified life estimation method for the spherical hull of deep manned submersibles , 2015 .
[7] W. Cui,et al. Experimental investigation on dwell-fatigue property of Ti–6Al–4V ELI used in deep-sea manned cabin , 2015 .
[8] S. Hochreiter,et al. Long Short-Term Memory , 1997, Neural Computation.
[9] Xiong Zhi-xi. Analysis of the pressure-bearing capacity of spherical hulls using the elastic foundation beam theory , 2014 .
[10] Cui Wei-cheng,et al. A Comparison of Different Rules for the Spherical Pressure Hull of Deep Manned Submersibles , 2011 .