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Wind tunnel experiment on a heavy truck equipped with front-rear trailer device

机译:在配有前后拖车设备的重型卡车上的风隧道实验

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摘要

AbstractThe aerodynamic drag of a “common” European heavy truck equipped with Front-Rear trailer device, earlier designed by the authors with numerical simulations, was investigated through wind tunnel testing on a 1:10 scale model.The device, placed on the top and sides of the trailer, as well as at the front and rear, increases the overall dimensions of the heavy truck by less than 1% in width and height, and reduces the overall drag by about 10%. The Front-Rear trailer device was separated into several parts (top, side, front and rear) to analyze which one reduced the drag more. An analysis was carried out on several parts of the same device simultaneously installed on the trailer (for example top-front and top-rear devices mounted at the same time), in addition to an analysis of the performance of the Front trailer device based on the length of the device itself. Tests were performed both in front wind and crosswind conditions.The device is expected to generate a consistent drag reduction both in front wind and crosswind, to reduce greenhouse gas and pollutant emissions.]]>
机译:<![CDATA [ 抽象 “普通”欧洲重型卡车配备前后拖车设备的空气动力学阻力,较早设计在1:10规模模型上通过风洞测试研究了具有数值模拟的作者。 设备,放在拖车的顶部和横线以及前后的横向和后部,将重型卡车的整体尺寸增加小于1%,宽度和高度,并降低了大约10%的总体拖动。前后拖车设备分为几个部件(顶部,侧,前后),以分析其更加减少拖动。除了基于的前拖车设备的性能的分析设备本身的长度。测试是在前风和交叉风条件下进行的。 预计设备将在前风中产生一致的阻力减少和交叉风,减少温室气体和污染物排放。 ]]>

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