Estimation of efficiency of technical solutions of an active road train by means of physical modelling

B. N. Belousov, K. V. Bologov, T. G. Zhogolev, R. A. Lapenkov, R. G. Mukhametzyanov, V. S. Sapozhkin, A. F. Starikov, A. M. Shcherbin
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Abstract

Introduction (problem statement and relevance). The article describes a physical model of a road train with active drive of semi-trailer wheels. The results of research tests of the physical model are given, with the help of which the adequacy of the mathematical models of dynamics of the road train as a part of a truck tractor and semi-trailer with active wheel drive is evaluated. The purpose of the study is estimation of efficiency of the technical solutions aimed at increase of vehicle passability and maneuverability.Methodology and research methods. In the course of the study the method of analysis of results of tests of the operating active road train scaled mock-up, the method of comparative analysis of the results of mathematical and physical modelling have been used. Scientific novelty and results. The performed studies confirmed correlation of the physical and mathematical modelling results, as well as indicated that the use of physical modelling serves as an efficient method to obtain an objective assessment of operational properties of the designed road train. The article considers constraints and limitations of using a scalable vehicle to study its dynamics. Matters of model parameters validity, conditions for dynamic similarity, and physical modelling results for active road train dynamics are given.Practical significance. Physical modelling of a (full-)scale sample using a scaled model reduces the costs and time when developing an active road train with new technical solutions, and increases reliability of the results obtained through the mathematical and physical modelling.
通过物理建模估算主动式公路列车技术解决方案的效率
导言(问题陈述和相关性)。文章介绍了带有半挂车车轮主动驱动装置的公路列车物理模型。文章给出了物理模型的研究测试结果,并在此基础上评估了作为卡车牵引车和半挂车一部分的带主动车轮驱动的公路列车动力学数学模型的适当性。研究的目的是评估旨在提高车辆通过性和机动性的技术解决方案的效率。在研究过程中,采用了对运行中的主动式道路列车比例模型试验结果进行分析的方法,以及对数学和物理建模结果进行比较分析的方法。科学新颖性和成果。所进行的研究证实了物理和数学建模结果的相关性,并表明使用物理建模是对所设计的列车运行性能进行客观评估的有效方法。文章考虑了使用可伸缩车辆研究其动力学的制约因素和局限性。文章给出了模型参数有效性、动态相似性条件和主动式列车动态物理建模结果等事项。使用按比例模型对(全)比例样本进行物理建模,可减少采用新技术方案开发主动式列车的成本和时间,并提高数学和物理建模结果的可靠性。
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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