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Emission Performance of Motorcycles in Real-Road Conditions
作者姓名:杜青  刘欣  尹君  尹涛  赵杰  郭津
作者单位:Internal Combustion Engine Research Institute Tianjin University,Internal Combustion Engine Research Institute,Tianjin University,Internal Combustion Engine Research Institute,Tianjin University,Internal Combustion Engine Research Institute,Tianjin University,Internal Combustion Engine Research Institute,Tianjin University,Internal Combustion Engine Research Institute,Tianjin University,Tianjin 300072,China,State Key Laboratory of Engines,Tianjin University,Tianjin 300072,China,Tianjin 300072,Tianjin 300072,Tianjin 300072,Tianjin 300072,Tianjin 300072
基金项目:天津市自然科学基金;教育部科学技术研究项目
摘    要:WMTC,which means a worldwide motorcycle testing cycle,is now regarded as the most possible choice for the global motorcycle emission testing cycle,but whether or not it can be used in China is still unknown.In this study,a large number of data on the speed-time trace of motorcycles were sampled from various kinds of roads in 5 cities in China.Based on a series of criterion numbers defined,the driving character of motorcycles in the real-road conditions of China was obtained.With the aid of a specially designed program,an emission testing cycle that can indicate the driving characteristics of motorcycle in the real-road conditions was synthesized,and the exhaust emission tests of 20 motorcycles under the synchronized cycle and WMTC were carried out based on a CVS system and a motorcycle chassis dynamometer.The results show that although there do exist differences in some criterion numbers between the real-road condition and WMTC,such as proportion of idling mode,mean speed,mean running speed and the average acceleration and deceleration rates,the driving behaviors are similar.The results of exhaust emission tests indicate that the emission values of motorcycles under the synchronized cycle and WMTC have a relatively strong correlation.This means that WMTC can be introduced as a standard motorcycle emission test regulation into China.

关 键 词:发射性能  摩托车  驾驶性能  实验周期
修稿时间:2007-05-08

Emission Performance of Motorcycles in Real-Road Conditions
DU Qing,LIU Xin,YIN Jun,YIN Tao,ZHAO Jie,GUO Jin.Emission Performance of Motorcycles in Real-Road Conditions[J].Transactions of Tianjin University,2007,13(5):322-327.
Authors:DU Qing  LIU Xin  YIN Jun  YIN Tao  ZHAO Jie  GUO Jin
Institution:1. Internal Combustion Engine Research Institute, Tianjin University, Tianjin 300072, China;State Key Laboratory of Engines, Tianjin University, Tianjin 300072, China
2. Internal Combustion Engine Research Institute, Tianjin University, Tianjin 300072, China
Abstract:WMTC,which means a worldwide motorcycle testing cycle,is now regarded as the most possible choice for the global motorcycle emission testing cycle,but whether or not it can be used in China is still unknown.In this study,a large number of data on the speed-time trace of motorcycles were sampled from various kinds of roads in 5 cities in China.Based on a series of criterion numbers defined,the driving character of motorcycles in the real-road conditions of China was obtained.With the aid of a specially designed program,an emission testing cycle that can indicate the driving characteristics of motorcycle in the real-road conditions was synthesized,and the exhaust emission tests of 20 motorcycles under the synchronized cycle and WMTC were carried out based on a CVS system and a motorcycle chassis dynamometer.The results show that although there do exist differences in some criterion numbers between the real-road condition and WMTC,such as proportion of idling mode,mean speed,mean running speed and the average acceleration and deceleration rates,the driving behaviors are similar.The results of exhaust emission tests indicate that the emission values of motorcycles under the synchronized cycle and WMTC have a relatively strong correlation.This means that WMTC can be introduced as a standard motorcycle emission test regulation into China.
Keywords:driving character of motorcycles  synthesized emission testing cycle  emission performance in real-road condition  WMTC
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