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TCV- A Unique Solution for HD Commercial BSIV Diesel Engine for Range of Altitude Operation

机译:TCV- HD商业BSIV柴油机的独特解决方案,用于高度操作范围

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摘要

BSIV implementation for commercial vehicle in pans India effectively from April 2017. It’s very challenging job for performance and emission engineer to meet engine performance & fuel economy with stringent emission norms for high power and torque density HD diesel engine. In Altitude, lack of air availability & combustion energy passes by mechanical waste gate, lead to lower boost at partial load in waste gate region; which in turn leads to poor engine performance & fuel efficiency and higher turbo speed. To control the turbocharger design speed limit various methodologies adopted like engine derating or optimizing the combustion parameters leads to poor vehicle performance. Combustion parameter optimsation is having limited scope for turbocharger speed control. In this paper we have identified the best cost effective technological solution “Turbo Control Valve (TCV) to meet the required boost pressure/airflow which leads to better engine performance and fuel efficiency at high altitude in part loads waste gate region. Adding to turbocharger speed is under the design limit & meeting the emission norms. Turbo control valve actuator concept will support us to control the position of waste gate according to the demand and the required boost pressure/airflow.
机译:BSIV实施PANS印度的商用车从2017年4月有效实施。绩效和排放工程师来说是非常具有挑战性的工作,以满足发动机性能和燃油经济性,具有严格的高功率和扭矩密度高清柴油发动机的排放规范。在高度,机械废物槽缺乏空气可用性和燃烧能量,导致废闸区域中的局部载荷升高;这反过来导致发动机性能和燃油效率差,涡轮速度更高。为了控制涡轮增压器设计速度限制,采用像发动机损失或优化燃烧参数的各种方法导致车辆性能差。燃烧参数优化对于涡轮增压器速度控制具有有限的范围。在本文中,我们已经确定了最优质的技术解决方案“Turbo控制阀(TCV),以满足所需的增压压力/气流,这导致在载荷废物栅极区域的高海拔处的更好的发动机性能和燃料效率。添加到涡轮增压器速度是在设计限制下,满足排放规范。 Turbo控制阀执行器概念将支持我们根据需求和所需的增压压力/气流来控制废物门的位置。

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