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Product Multibody Dynamics Analysis for Low-Carbon Footprint

机译:低碳足迹的产品多体动力学分析

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摘要

With the increasingly serious global climate problem, the low-carbon design of products has gradually become an important direction of sustainable manufacturing. The optimization design of product structure is one of the important means to realize the low-carbon operation of product structure. Therefore, how to carry out the low-carbon optimization design of the product is the focus of this paper. In this paper, a new framework of lowcarbon manufacturing is constructed, the load on the crane of the offshore wind power installation platform is analyzed, and the dynamic load generated by the crane during lifting, rotating, and luffing is analyzed in detail. The simulation results are compared with the empirical formula provided by the crane design specification and the dynamic analysis results of the crane, which proves the rationality of the simulation results and the dynamic theoretical analysis. And the wind load on the crane is calculated, which provides support for the rigid-flexible coupling dynamic analysis of other parts of the solution. Based on the dynamic simulation and load analysis of the offshore platform crane, the low-carbon optimization design of the offshore platform pile leg is carried out, the carbon emission of the whole life cycle is optimized, and the feasibility of the scheme is verified.
机译:随着全球气候问题的日益严重,产品的低碳设计逐渐成为可持续制造的重要方向。产品结构的优化设计是实现产品结构低碳运行的重要手段之一。因此,如何对产品进行低碳优化设计是本文关注的重点。本文构建了低碳制造的新框架,分析了海上风电安装平台起重机上的载荷,详细分析了起重机在起重、旋转、变幅过程中产生的动载荷。将仿真结果与起重机设计规范提供的经验公式和起重机的动力分析结果进行对比,证明了仿真结果和动力学理论分析的合理性。并计算了起重机上的风荷载,为解其他部位的刚柔耦合动力学分析提供了支撑。基于对海洋平台起重机的动力模拟和荷载分析,对海洋平台桩腿进行低碳优化设计,优化全生命周期碳排放,验证方案可行性。

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