Towards the Development of an Ocean Engineering Library for OpenModelica

Savin Viswanathan, C. Holden
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引用次数: 5

Abstract

The development of component models to populate a proposed OpenModelica standard library for the ocean engineering domain is described through the process of modelling the response of catenary-moored wave-energy converters in the ‘free-to-use’ OpenModelica simulation environment and its associated OMEdit graphical user interface. A wave energy conversion concept is presented, followed by the implementation of Modelica component models and functions to simulate wave, current, and mooring loads on a cylindrical floating object. The irregular sea surface is specified using the Pierson-Moskowitz spectrum and the heave force on the buoy is determined based on the Froude-Krylov formulation. Mooring load formulation is based on the catenary theory. Combined wave and current loads on the buoy and on the mooring chain are arrived at using the Morison equation. The results are verified with the commercial software Orcaflex, and the preliminary OceanEngineering library is made available for download. The integrated simulation of the multiphysical wave energy buoy system is then carried out to determine the energy harvest potential, and results discussed. An alternative design is then suggested and simulated to demonstrate the advantages of using the component-based approach.
面向OpenModelica的海洋工程库开发
通过在“免费使用”的OpenModelica仿真环境及其相关的OMEdit图形用户界面中对悬链系泊波浪能转换器的响应进行建模,描述了用于填充海洋工程领域拟议OpenModelica标准库的组件模型的开发。提出了波浪能量转换的概念,然后实现了Modelica组件模型和函数来模拟圆柱形漂浮物上的波浪、电流和系泊载荷。不规则海面使用皮尔逊-莫斯科维茨谱来指定,浮标上的升力是根据弗劳德-克雷洛夫公式确定的。系泊载荷公式基于悬链线理论。利用莫里森方程求得浮标和系泊链上的波浪和电流联合载荷。用商业软件Orcaflex验证了结果,并提供了初步的海洋工程库供下载。对多物理点波浪能浮标系统进行了综合模拟,确定了能量收集潜力,并对结果进行了讨论。然后提出并模拟了另一种设计,以演示使用基于组件的方法的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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