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Prediction and Verification of the Maneuverability of Naval Surface Ships

机译:海军水面舰艇机动性的预测与验证

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摘要

The North Atlantic Treaty Organization (NATO) Specialist Team for Seaway Mobility (ST/SM) has progressed significantly in the development of new mission-oriented maneuvering criteria in the format of a NATO Standardization Agreement (STANAG). This work was finalized in July 2010, and the STANAG has now been submitted for ratification to all NATO member countries. Navies can now include maneuverability requirements in their vessel specifications more comprehensively and accurately. Obviously, this will have implications for prospective ship designers and builders, who will be obliged to meet these requirements. The objective of this paper is to create awareness that these criteria are approaching soon. Tools and methods are to be prepared and validated to assist in the design of the vessel in accordance with the criteria. The paper explains the prediction and verification procedures of vessel compliance. First, the philosophy and approach of the criteria is explained and discussed. Discussing all criteria is a task too detailed for this paper, as there are up to 240 criteria, depending on missions and capabilities. A selected subset of criteria is discussed. An example of the verification process is carried out for one ship: the naval combatant benchmark vessel 5415M. The reader will be guided through the steps of: selection of criteria, selection of tools, and the verification itself. The contents of the steps will be different in each loop of the design spiral. This paper shows methods to predict and verify compliance with each requirement in both the conceptual and detailed design stage. In the conceptual design stage the verification is done by performing numerical simulations. In the detailed design stage, these simulations are augmented by a smart selection of scaled model tests.
机译:北大西洋公约组织(NATO)海上机动性专家组(ST / SM)在以北约标准化协议(STANAG)的格式制定了新的以任务为导向的机动标准方面取得了重大进展。这项工作于2010年7月完成,目前已将STANAG提交所有北约成员国批准。海军现在可以在其船只规格中更全面,更准确地包含可操纵性要求。显然,这将对有意满足这些要求的潜在船舶设计者和建造者产生影响。本文的目的是让人们意识到这些标准即将到来。应准备和验证工具和方法,以帮助按照标准进行容器的设计。该文件解释了船舶合规性的预测和验证程序。首先,解释和讨论该标准的原理和方法。对于本文而言,讨论所有标准是一项过于详尽的任务,因为多达240条标准取决于任务和能力。讨论了选定的标准子集。验证过程的示例针对一艘船:海军战斗人员基准战舰5415M。将指导读者完成以下步骤:选择标准,选择工具以及验证本身。在设计螺旋的每个循环中,步骤的内容将有所不同。本文介绍了在概念设计和详细设计阶段预测和验证是否符合每项要求的方法。在概念设计阶段,通过执行数值模拟来完成验证。在详细的设计阶段,可以通过明智地选择比例模型测试来增强这些仿真。

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