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创新平台开放战略研究的最新进展与发现 被引量:3
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作者 贺俊 国旭 《齐鲁学刊》 CSSCI 2022年第2期119-131,共13页
数字化和模块化所催生的平台企业大量涌现,使得平台竞争问题成为近年来学术研究的重要议题。然而,国内既有的研究多聚焦于交易性平台(基于双边市场理论的经济学研究甚至将交易性平台作为单一研究对象)竞争战略问题,而对创新平台、特别... 数字化和模块化所催生的平台企业大量涌现,使得平台竞争问题成为近年来学术研究的重要议题。然而,国内既有的研究多聚焦于交易性平台(基于双边市场理论的经济学研究甚至将交易性平台作为单一研究对象)竞争战略问题,而对创新平台、特别是创新平台开放战略问题的研究和引介明显不足。基于此,在阐释创新平台开放性与开放战略分析框架的基础上,重点对开放战略静态选择、开放战略动态有效性以及开放战略生态影响的发展脉络和前沿进展进行系统的梳理,并提出未来该领域拓展研究的四个可能方向:创新平台互补品竞争战略、平台生命周期与创新平台开放战略的选择、环境因素与创新平台开放战略的匹配、融合质性数据与定量数据的研究方法创新,就显得尤为重要。 展开更多
关键词 创新平台 开放战略 平台动态性 平台生态
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Dynamic Performance of a Semi-Submersible Platform Subject to Wind and Waves 被引量:3
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作者 ZHU Hang OU Jinping 《Journal of Ocean University of China》 SCIE CAS 2011年第2期127-134,共8页
By applying experimental and numerical simulations, the motion performance of a semi-submersible platform with mooring positoning system under combined actions of wind and waves is studied. The numerical simulation is... By applying experimental and numerical simulations, the motion performance of a semi-submersible platform with mooring positoning system under combined actions of wind and waves is studied. The numerical simulation is conducted by the method of nonlinear time domain coupled analysis, and the mooring forces are calculated by the piecewise extrapolating method. The scale in the model experiment is 1:100, and the mooring system of the model is designed with the method of equivalent water-depth truncation by comparing the numerical and the experimental results, the platform motion and mooring forces subject to wind and waves are investigated. The results indicate that the numerically simulated mooring forces agree well with the experimental results in static equivalent field, but show some difference in dynamic equivalent field; the numerically simulated platform motions coincide well with the experimental results. The maximum motion of the platform under operating conditions is 20.5 m. It means that the horizontal displacement is 2% less than the water depth, which satisfies the operating requirements. 展开更多
关键词 semi-submersible platform WIND WAVES numerical simulation experimental simulation
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