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Improving Thermal Efficiency by Varying Input Parameters of a Four Stroke Single Cylinder S.I Engine

机译:通过改变四冲程单缸S.i发动机的输入参数来提高热效率

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The use of automobiles is growing day by day and so does the need to improve efficiency in all stages. Thermal efficiency is a factor that is measured by work done by the heat supplied to it. For improving the efficiency of an S.I engine, the inlet air conditions were altered to support various parameters. Kirloskar TV1 variable compression engine was used to run the tests. Using a variable compression engine helps us to alter the compression ratio without stopping the engine by using the tilted cylinder arrangement. The engine can be run easily at variable load as well as rpm. The orifice was modified to equip the alterations and to run the tests. Atmospheric air contains moisture, and since this air gets inside the engine, initial test was based on to reduce this moisture content and alter the temperature of the air. Various conditions were taken into consideration on how to vary the inlet air parameters. Various modes were sequenced to test out the efficiency. Test 1 involved humidifying the inlet air. Test 2 involved cooling the inlet air. Test 3 involved dehumidifying the inlet air. Test 4 involved altering oxygen content in an inlet air, and test 5 involved a combination of cooling the inlet air and dehumidifying it. The engine was run at constant load and at variable rpm, and test 5 gave optimum results.
机译:汽车的使用日益增长,因此需要提高所有阶段的效率。热效率是通过供应到它的热量完成的工作来衡量的因素。为了提高S.I发动机的效率,改变了入口空气条件以支持各种参数。 Kirloskar TV1可变压缩引擎用于运行测试。使用可变压缩引擎有助于我们通过使用倾斜的汽缸装置改变压缩比而不会使发动机停止。发动机可以在可变负载和RPM处轻松运行。孔口被修改为装备​​改变并运行测试。大气空气含有水分,由于该空气进入发动机内,初始测试基于降低该水分含量并改变空气的温度。考虑到如何改变入口空气参数的各种条件。测序各种模式以测试效率。测试1涉及加湿入口空气。测试2涉及冷却入口空气。测试3涉及除湿入口空气。测试4涉及在入口空气中改变氧含量,并且测试5涉及冷却入口空气和除湿的组合。发动机以恒定负载和可变RPM运行,测试5得到最佳结果。

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