首页> 外文会议>New engines and components, 2010 >Variable Runner Length Intake Manifold Design:An Interim Progress Report
【24h】

Variable Runner Length Intake Manifold Design:An Interim Progress Report

机译:流道长度可变进气歧管设计:中期进度报告

获取原文
获取原文并翻译 | 示例

摘要

Manifold tuning has long been a critical facet of engine design and performance optimization. This paper details the design, analysis, and initial fabrication of a variable runner length intake manifold for a restricted 2003 Suzuki GSXR 600 engine. A series of analytical Helmholtz resonance calculations were first performed to assess the feasibility of such a system. A comprehensive CFD study was then performed using a combination of Ricardo WAVE® and Fluent® simulations. Custom software was developed to optimize restrictor geometry through fully automated CFD simulations whose results were investigated to determine the optimal transition for the intended flow characteristics. This resulting candidate geometry was then used with a variable intake design in a Ricardo WAVE® manifold dynamics model and was varied iteratively to yield an optimum final geometry. This step-wise design method was intended to minimize the computational expense necessary to produce an acceptable design slated for production. A series of manufacturing processes was then developed to fabricate the various intake components out of lightweight carbon fiber or aluminum. Sliding mechanisms were actuated via a linkage system powered by a small servo motor. This motor was controlled by a Microchip dsPIC® microcontroller that was embedded into the 2009 Cooper Union FSAE® car's power distribution PCB. The controller communicates with the engine's MicroSquirt® ECU over CAN to read instantaneous engine speed and commands the servo based off a empirically tuned look up table. The system can be monitored wirelessly over 802.11b.
机译:歧管调整一直是引擎设计和性能优化的关键方面。本文详细介绍了用于受限2003 Suzuki GSXR 600发动机的可变流道长度进气歧管的设计,分析和初始制造。首先进行了一系列的亥姆霍兹共振分析计算,以评估这种系统的可行性。然后,结合使用里卡多(Ricardo)和Fluent(R)仿真进行了全面的CFD研究。开发了定制软件,以通过全自动CFD模拟来优化节流器的几何形状,并对其结果进行了研究,以确定针对预期流动特性的最佳过渡。然后,在RicardoWAVE®歧管动力学模型中将所得的候选几何形状与可变进气口设计一起使用,并进行迭代更改以产生最佳的最终几何形状。这种逐步设计方法旨在最大程度地减少生产计划中可接受的设计所需的计算费用。然后开发了一系列制造工艺,以用轻质碳纤维或铝制造各种进气组件。滑动机构是通过由小型伺服电机提供动力的联动系统驱动的。该电机由嵌入到2009 Cooper UnionFSAE®汽车配电板中的MicrochipdsPIC®微控制器控制。控制器通过CAN与发动机的MicroSquirt®ECU通信以读取发动机的瞬时转速,并根据经验调整的查找表命令伺服系统。可以通过802.11b无线监控系统。

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