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A Study of the Auxiliary Belt Drive System for Actual Fuel Saving

机译:实际燃料辅助带驱动系统的研究

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The engine indicated torque is not delivered entirely to the wheels, because it is lowered by losses, such as the pumping, mechanical friction and front auxiliary power consumption. The front auxiliary belt drive system is a big power consumer-fueling and operating the various accessory devices, such as air conditioning compressor, electric alternator, and power steering pump. The standard fuel economy test does not consider the auxiliary driving torque when it is activated during the actual driving condition and it is considered a five-cycle correction factor only. Therefore, research on improving the front end auxiliary drive (FEAD) system is still relevant in the immediate future, particularly regarding the air conditioning compressor and the electric alternator. An exertion to minimize the auxiliary loss is much smaller than the sustained effort required to reduce engine friction loss. The purpose of this paper is two-fold: first, to measure a quantitative accounting value of the FEAD system driving torque for evaluating the loss in accessories ; and second, to devise a useful measure for reducing friction of the FEAD system using the assessment standard. In order to determine whether the proposed scheme is worth developing, this study investigated the fundamental features of the FEAD system. Many methods have been devised to minimize the driving torque in the 2.0 L diesel engine FEAD system. During the measurement, the accessory load controller and temperature control chamber were widely used for the actual driving environment. After modifications to the FEAD system, such as V- ribbed belts, layout, idler, tension and auxiliary, driving torque was dramatically reduced. Hence, it can be an important measure to improve vehicle fuel economy in the standard test modes, such as Federal Test Procedure (FTP), New European Driving Cycle (NEDC) and real driving emission (RDE) tests.
机译:发动机指示的扭矩不会完全送到车轮上,因为它被损耗降低,例如泵送,机械摩擦和前辅助功耗。前辅助皮带驱动系统是一个大功率消耗燃料和操作各种配件装置,例如空调压缩机,电动发电机和动力转向泵。当在实际驾驶条件期间激活时,标准燃料经济性测试不考虑辅助驱动扭矩,并且仅被认为是一种五周期校正因子。因此,改善前端辅助驱动器(FEAD)系统的研究仍然在立即将来相关,特别是关于空调压缩机和电动交流发电机。减少辅助损耗的努力远小于降低发动机摩擦损失所需的持续努力。本文的目的是两倍:首先,测量粉体系统的定量算命值,用于评估附件损失的驾驶扭矩;其次,设计使用评估标准减少粉丝系统的摩擦摩擦的有用措施。为了确定拟议方案是否值得开发,本研究调查了粉丝系统的基本特征。已经设计了许多方法以最小化2.0L柴油发动机粉体系统中的驱动扭矩。在测量期间,附件负载控制器和温度控制室广泛用于实际驾驶环境。在修改到粉丝系统之后,如V-肋带,布局,惰轮,张力和辅助,驱动扭矩显着减少。因此,可以是改善标准测试模式中的车辆燃料经济性的重要措施,例如联邦测试程序(FTP),新的欧洲驾驶循环(NEDC)和实际驱动发射(RDE)测试。

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