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首页> 外文期刊>Tribology - Materials, Surfaces & Interfaces >Improved modelling of trains braking under low adhesion conditions
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Improved modelling of trains braking under low adhesion conditions

机译:在低粘附条件下改进了制动的制动建模

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摘要

Predicting the behaviour of trains when braking under low adhesion conditions presents considerable challenges. This paper describes an approach to the problem using a model of the full train braking system known as LABRADOR (Low Adhesion Braking Dynamic Optimization for Rolling Stock) and an improved method for representing the creep forcecreepage behaviour when low adhesion is presently known as WILAC (Water Induced Low Adhesion Creep Force Model). The development of these models and their integration are summarized and a number of test cases are presented to demonstrate the improvements which can be gained from this approach. A number of suggestions are made for future enhancements with the aim of providing brake engineers and systems integrators with reliable simulation tools for optimizing train braking performance when low adhesion is present.
机译:在低粘附条件下制动时预测列车的行为呈现相当大的挑战。 本文介绍了使用称为拉布拉多(滚动卷材的低粘合动态优化)的全阵列制动系统的模型的问题的方法,以及当当前称为WILAC时,当低粘合时,用于代表蠕变前潜气行为的改进方法(水 诱导低粘附蠕变力模型)。 总结了这些模型及其集成的发展,并提出了许多测试用例以证明可以从这种方法获得的改进。 对于未来的增强,目的是提供制动工程师和系统集成商的未来增强,以便在存在低粘合时优化火车制动性能的可靠仿真工具。

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