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USAGE OF DIGITAL TOOLS FOR THE OPTIMUM PROPELLER DESIGN

机译:使用数字工具进行最佳螺旋桨设计

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摘要

The usage of more sophisticated design and analysis tools have become prevalent in all industries. In order to get the true value out of these numerical tools, the actual design requirements need to be defined properly and in general, this leads to the question of how to find the right balance between conflicting requirements. More feedback on the performance of a design can be obtained with usage of numerical simulations within the design evaluation phase and with digital data collection tools in the operational phase. With the implementation of CFD simulations in the design cycle, unforeseen deviations with model testing campaigns and actual full scale sea trials has reduced, and collection of actual vessel operational data, in combination with a system simulation approach generates further insight in the actual operation, which can be used to further fine-tune the design philosophy. Detailed evaluation of the results from full scale CFD simulations have revealed interesting phenomena related to the Reynolds scaling effects of ducted propellers.
机译:在所有行业中,更复杂的设计和分析工具的使用已变得普遍。为了从这些数值工具中获得真正的价值,需要正确定义实际的设计要求,总的来说,这带来了一个问题,即如何在冲突的要求之间找到正确的平衡。通过在设计评估阶段使用数字仿真并在操作阶段使用数字数据收集工具,可以获得有关设计性能的更多反馈。通过在设计周期中执行CFD模拟,模型测试活动和实际的全面海试所引起的不可预见的偏差已减少,并且实际船舶运行数据的收集与系统模拟方法的结合可为实际运行提供进一步的洞察力,可用于进一步微调设计理念。全面CFD模拟结果的详细评估显示了与导管螺旋桨的雷诺缩放效应相关的有趣现象。

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