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Modeling Over-Snow Vehicle (OSV) Fuel Use and Emissions Rates Versus Engine Load based on Real-World Measurements

机译:根据实际测量结果对过雪车(OSV)的燃油使用和排放率与发动机负载进行建模

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Field measurements were conducted at Yellowstone National Park for a Ford E350 snow coach equipped with snow tracks that operated over a 32 mile snow covered route. Second-by-second speed, acceleration, road grade, fuel use, and emission rates were estimated based on field measurements. A physically-based model for the relationship between vehicle activity and fuel use rate was posited based on adapting the concept of Vehicle Specific Power (VSP) for highway vehicles to over-snow vehicles (OSVs). The adapted form of VSP is referred to here as an engine load parameter for OSVs (ELP_(Osv)). Fuel use rate was found to be a function of a linear combination of basis functions that represent kinetic energy, potential energy, and rolling resistance. Although aerodynamic drag was found to be unimportant, rolling resistance is more important for the measured OSV operating on snow than it is for a typical passenger car operating on dry pavement. Because OSV operators avoid using the brake, there were no observations of negative values of ELP_(Osv), which differs from activity patterns of highway vehicles. Fuel was found to be a monotonic function of ELP_(Osv). Fuel-based emission rates for CO and NOx were a monotonic function of fuel use rate. Thus, the development of a fuel use and emission rate model of OSVs based on speed, acceleration, and road grade has been demonstrated. In future work, this modeling approach will be extended to additional OSVs and will be used to make predictions of cycle average fuel use and emission rates.
机译:实地测量是在黄石国家公园对一辆配备有在32英里积雪路线上行驶的雪道的福特E350雪车进行的。根据现场测量结果估算出了每秒的速度,加速度,道路坡度,燃料使用量和排放率。基于将公路车辆的车辆特定功率(VSP)的概念适用于过雪车辆(OSV),建立了基于物理的车辆活动与燃油使用率之间关系的模型。 VSP的适应形式在此称为OSV的引擎负载参数(ELP_(Osv))。发现燃料使用率是代表动能,势能和滚动阻力的基本函数的线性组合的函数。尽管发现空气阻力并不重要,但滚动阻力对于在雪地上测得的OSV而言比在干燥路面上运行的典型乘用车更为重要。由于OSV操作员避免使用制动器,因此没有观察到ELP_(Osv)的负值,这与公路车辆的活动模式不同。发现燃料是ELP_(Osv)的单调函数。 CO和NOx的基于燃料的排放率是燃料使用率的单调函数。因此,已经证明了基于速度,加速度和道路坡度的OSV的燃料使用和排放率模型的开发。在未来的工作中,该建模方法将扩展到其他OSV,并将用于预测循环平均燃料使用量和排放率。

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