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Comparison of different gas models to calculate the spring force of a hydropneumatic suspension

机译:比较不同的气体模型来计算液压气动悬架的弹簧力

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摘要

When developing any simulation model some compromise must be made between computational efficiency and the accuracy of the model. This study compares the performance of three ideal gas (IG) law variations (IG with the energy equation (EE), isothermal and adiabatic), and two real gas approaches (Benedict Webb Rubin (BWR) equation with and without the EE) to model the spring force of a hydropneumatic suspension. These models are compared with experimental data obtained from laboratory tests on a single hydropneumatic suspension unit. Both the BWR and IG models with the EE offer a significant improvement in correlation compared to the models without the EE. The real gas BWR approach offers a small improvement over the IG approach under the test conditions. The best (BWR with EE) and worst (IG isothermal) models are then used to model the spring forces in a full vehicle model of a 4 × 4 Sports Utility vehicle (SUV). The data is again compared with experimental results and the BWR model with the EE correlates significantly better than the IG isothermal model. It is thus concluded that the inclusion of the EE will yield significantly better results and it should only be omitted if the parameters investigated are not sensitive to errors in the spring model.
机译:在开发任何仿真模型时,必须在计算效率和模型精度之间做出一些折衷。这项研究比较了三种理想气体(IG)规律变化(具有能量方程(EE),等温和绝热的IG)和两种实际气体方法(具有和不具有EE的本尼迪克特·韦伯·鲁宾(BWR)方程)的性能液压气动悬架的弹簧力。将这些模型与从单个液压气动悬挂装置上的实验室测试获得的实验数据进行比较。与没有EE的模型相比,带有EE的BWR模型和IG模型都提供了显着的相关性。在测试条件下,实际气体BWR方法比IG方法略有改进。然后,将最佳模型(带EE的BWR)和最差模型(IG等温)用于在4×4运动型多功能车(SUV)的完整模型中对弹簧力进行建模。再次将数据与实验结果进行比较,具有EE的BWR模型的相关性明显优于IG等温模型。因此得出的结论是,将EE包括在内会产生更好的结果,并且仅当所研究的参数对弹簧模型中的误差不敏感时才应省略。

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