Investigation on the equivalent mechanical longitudinal fluid sloshing model for a partially filled tank vehicle

Q3 Engineering
Xiujian Yang, Chuqiao Feng
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引用次数: 0

Abstract

This paper aims to investigate the equivalent mechanical model of longitudinal fluid sloshing for a partially filled tank vehicle. A one-degree-of-freedom (1DOF) mass-spring-damping (MSD) equivalent mechanical model proposed in the literature is first evaluated. To improve the precision of the MSD model, two 2DOF models those are the serial 2DOF (2DOF-S) model and the parallel 2DOF (2DOF-P) model, and a hybrid 3DOF (3DOF-H) model have been proposed, formulated and evaluated. Comparisons demonstrate that the 3DOF-H model can provide rather satisfying precision in broad ranges of tank ellipticity and fill level. Finally, the proposed 3DOF-H MSD sloshing model is further evaluated from the viewpoint of vehicle dynamics response. It is revealed that it is easy to integrate the 3DOF-H model with vehicle dynamics to build a fluid tank vehicle model which can reflect the basic dynamics property of a tank vehicle.
部分充液罐车等效纵向流体晃动力学模型研究
本文旨在研究部分充液罐车纵向流体晃动的等效力学模型。首次对文献中提出的单自由度质量弹簧阻尼等效力学模型进行了评价。为了提高MSD模型的精度,提出了两种2DOF模型,即串行2DOF(2DOF-S)模型和并行2DOF(2DOF-P)模型,以及混合3DOF(3DOF-H)模型,并对其进行了公式化和评估。比较表明,3DOF-H模型在宽的储罐椭圆度和液位范围内都能提供相当令人满意的精度。最后,从车辆动力学响应的角度对所提出的3DOF-H-MSD晃动模型进行了进一步的评价。结果表明,将3DOF-H模型与车辆动力学相结合,建立能够反映坦克车辆基本动力学特性的坦克车辆模型是很容易的。
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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来源期刊
International Journal of Vehicle Performance
International Journal of Vehicle Performance Engineering-Safety, Risk, Reliability and Quality
CiteScore
2.20
自引率
0.00%
发文量
30
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