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作 者:王艳真 徐思豪[1] 陈勇 王瀚 WANG Yanzhen;XU Sihao;CHEN Yong;WANG Han(Marine Design and Research Institute of China,Shanghai 200011,China)
机构地区:[1]中国船舶及海洋工程设计研究院,上海200011
出 处:《船舶与海洋工程》2021年第4期66-70,共5页Naval Architecture and Ocean Engineering
摘 要:在船舶轮机管路系统的初步设计和详细设计阶段,需布置阀件体现系统设计,并预留操作空间与其他专业协定空间布局,传统的设计方法难以满足随系统设计更新而快速协同更新的场景需求。为解决该问题,基于CATIA V6,通过分析阀件的设计要点,结合参数化设计和知识工程技术,实现知识驱动下的阀件参数化设计。利用CATIA V6知识工程将设计知识融合到设计过程中,极大地提高设计效率、设计模型的可修改性和响应速度。该方法可扩展至其他船舶附件的设计场景中,进一步提高船舶三维设计的智能化水平。In the preliminary design and detailed design stages of marine pipeline systems,valve components need to be arranged to reflect the system design and to reserve operating space for other professionals. The traditional design method can hardly meet the requirements of rapid collaborative update along with system design updates. To solve the issue,the knowledge driven parametric design is brought forward based on CATIA V6,where the key points for valve design are analyzed according to the parametric design and the knowledge engineering technology. The CATIA V6 knowledge engineering is used to integrate the design knowledge into the design process,which significantly improves the design efficiency,the modifiability of the design model and the response speed. This method can be extended to the design scenarios of other ship accessories,so as to further improve the intelligent level of 3D ship design.
关 键 词:CATIA V6 知识工程 参数化阀件 协同开发
分 类 号:U664.5[交通运输工程—船舶及航道工程]
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