首页> 外文会议>Conference on industrial and commercial applications of smart structures technologies >Enhanced Fuel Efficiency on Tractor-Trailers using Synthetic Jet-Based Active Flow Control
【24h】

Enhanced Fuel Efficiency on Tractor-Trailers using Synthetic Jet-Based Active Flow Control

机译:使用基于喷射的合成主动流控制提高牵引车的燃油效率

获取原文

摘要

The application of piezo-electrically-driven synthetic-jet-based active flow control to reduce drag on tractor-trailers was explored experimentally in wind tunnel testing as well as full-scale road tests. Aerodynamic drag accounts for more than 50% of the usable energy at highway speeds, a, problem that applies primarily to trailer trucks. Therefore, a reduction in aerodynamic drag results in large saving of fuel and reduction in CO_2 emissions. The active flow control technique that is being used relies on a modular system comprised of distributed, small, highly efficient actuators. These actuators, called synthetic jets, are jets that are synthesized at the edge of an orifice by a periodic motion of a piezoelectric diaphragm(s) mounted on one (or more) walls of a sealed cavity. The synthetic jet is zero net mass flux (ZNMF), but it allows momentum transfer to flow. It is typically driven near diaphragm and/or cavity resonance, and therefore, small electric input [O(10W)] is required. Another advantage of this actuator is that no plumbing is required. The system doesn't require changes to the body of the truck, can be easily reconfigured to various types of vehicles, and consumes small amounts of electrical power from the existing electrical system of the truck. Preliminary wind tunnel results showed up to 18% reduction in fuel consumption, whereas road tests also showed very promising results.
机译:在风洞测试以及大规模道路测试中,实验性地探索了基于压电驱动的基于合成射流的主动流量控制在减少拖挂车上的阻力方面的应用。空气阻力在高速公路速度下占可用能量的50%以上,这是一个主要适用于拖车的问题。因此,空气阻力的减少导致燃料的大量节省和CO 2排放的减少。所使用的主动流量控制技术依赖于由分布式,小型,高效执行机构组成的模块化系统。这些致动器称为合成射流,是通过安装在密封腔的一个(或多个)壁上的压电隔膜的周期性运动而在孔的边缘合成的射流。合成射流为零净质量通量(ZNMF),但它允许动量传递流动。它通常在振膜和/或腔谐振附近驱动,因此需要较小的电输入[O(10W)]。该执行器的另一个优点是不需要管道。该系统不需要更改卡车的车身,可以轻松地重新配置为各种类型的车辆,并消耗卡车现有电气系统的少量电力。初步的风洞试验结果表明,燃油消耗降低了18%,而路试也显示出了非常有希望的结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号