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Design and Fabrication of Air Pre Heater for Diesel Engine

机译:柴油机空气预热器的设计与制造

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In a diesel engine, the fuel-air mixture is introduced at room temperature and burned inside the cylinder. After the fuel is burned, the combustion products are discharged at atmospheric pressure and high temperature. The heat generated during the combustion of fuel is partially converted into work to drive the car (or any load) and remaining is wasted to the atmosphere through exhaust gas and coolant. The heat generated by combustion of fuel is converted into the work because of the pressure created by the combustion process. The efficiency of the engines is between 20% and 30%. This paper highlights provision for incorporating a heating vessel for preheating air before admitting in to the cylinder of a diesel engine. The heating vessel comprises heating elements for heating the air flowing past said heating element, and a body for mechanically holding and electrically contacting said heating element. The effect of preheated air on standard diesel fuel engine indicated a good result on emission control. NOx and CO emissions at intake air temperature of 550C were less when compared at intake air temperature of 320 C. Higher inlet air temperature causes lower ignition delay, which is responsible for lower NOx formation. Uniform or better combustion is occurred due to pre-heating of inlet air, which also causes lower engine noise. Easy vaporization and better mixing of air and fuel occur due to warm up of inlet air, which causes lower CO emission.
机译:在柴油发动机中,燃料-空气混合物在室温下引入并在气缸内燃烧。燃料燃烧后,燃烧产物在大气压和高温下排出。燃料燃烧过程中产生的热量被部分转化为功以驱动汽车(或任何负载),而剩余的热量则通过废气和冷却剂浪费到大气中。由于燃烧过程产生的压力,燃料燃烧产生的热量被转化为功。发动机的效率在20%到30%之间。本文着重介绍了在装有柴油机气缸之前要预先加热空气的加热容器的规定。加热容器包括:加热元件,用于加热流过所述加热元件的空气;以及主体,其用于机械地保持和电接触所述加热元件。预热空气对标准柴油发动机的影响表明在排放控制方面取得了良好的效果。与进气温度为320℃时相比,进气温度为550℃时NOx和CO排放较少。较高的进气温度导致较低的点火延迟,这导致了NOx的生成减少。进气的预热会导致均匀或更好的燃烧,从而降低发动机噪音。由于进气的预热,容易汽化,并使空气和燃料更好地混合,从而降低了CO的排放。

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