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A Comparison of Full Scale Aft Cavity Drag Reduction Concepts With Equivalent Wind Tunnel Test Results

机译:全尺寸后腔减阻概念与等效风洞试验结果的比较

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摘要

Comparison studies have been conducted on a 1:16th scale model and a full scale tractor trailer of a variety of sealed aft cavity devices as a means to develop or enhance commercial drag reduction technology for class 8 vehicles. Various base cavity geometries with pressure taps were created for the scale model. The studies confirmed that length has an important effect on performance. The interaction of the boat-tailed aft cavity with other drag reduction devices, specifically side skirts, was investigated with results showing no discernable drag performance interaction between them. Overall, the experiments show that a boat-tailed aft cavity can reduce the drag up to 13%. Full-scale tests of a commercially derived product based on these scale tests were also completed using SAE Type II testing procedures. Full-scale tests indicated a fuel savings of over 6.5%. The implementation of these devices is shown to be a viable, effective and economical way to reduce fuel consumption on ground transport vehicles.
机译:已经在1:16比例模型和各种密封后腔装置的全尺寸牵引车拖车上进行了比较研究,以此作为开发或增强8级车辆的商用减阻技术的手段。为比例模型创建了带有压力抽头的各种基腔几何形状。研究证实,长度对性能有重要影响。研究了船尾船尾腔与其他减阻装置(特别是侧裙)的相互作用,结果显示它们之间没有明显的阻力性能相互作用。总体而言,实验表明,船尾尾腔可以将阻力降低多达13%。基于这些规模测试的商业衍生产品的全面测试也使用SAE II型测试程序完成。全面测试表明,燃油节省超过6.5%。这些设备的实施被证明是减少地面运输车辆燃料消耗的可行,有效和经济的方式。

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