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NOx Emission Prediction Based on Measurement of in-Cylinder Pressure for CI Engine Running with Diesel and Biodiesel

机译:基于柴油和生物柴油的CI发动机缸内压力测量的NOx排放预测

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摘要

NOx is one of the major toxic emissions that needs to be regulated stringently in both EU and USA emission regulations. The engine designer is keen to get an accurate, reliable and cost effective NOx measurement system. In this paper, the application of the cylinder pressure for predicting the NOx emission of compression ignition (CI) engine fuelled with diesel and biodiesel during steady state operations is carried out. To address the problem, an experimental work was conducted on four-cylinder, turbo-charged, four-stroke and direct-injection CI engine which was fuelled with diesel and biodiesel blends. During the experiment, the main parameters consisting of in-cylinder pressure, fuel flow rate, air flow rate, and the NOx emission, were measured. The temperature within the cylinder was predicted using the cylinder pressure and air flow rate. Using the temperature values, the NOx emission was simulated in the Zeldovich extended mechanism. The simulation result was then compared with the measured one for a range of engine operating conditions. The models were shown to produce consistent results with the measured one for a range of engine working speeds and loads.
机译:NOx是主要的有毒排放物之一,需要在欧盟和美国的排放法规中严格进行管制。发动机设计人员渴望获得一种准确,可靠且具有成本效益的NOx测量系统。在本文中,气缸压力用于预测在稳态运行期间以柴油和生物柴油为燃料的压燃式(CI)发动机的NOx排放。为了解决该问题,对以柴油和生物柴油混合物为燃料的四缸,涡轮增压,四冲程和直喷CI发动机进行了实验工作。在实验过程中,测量了主要参数,包括缸内压力,燃料流量,空气流量和NOx排放量。使用气缸压力和空气流速来预测气缸内的温度。使用温度值,在Zeldovich扩展机制中模拟了NOx排放。然后将仿真结果与一系列发动机工况的实测结果进行比较。结果表明,在一定范围的发动机工作速度和负荷下,这些模型都能产生与实测结果一致的结果。

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