Research of the modernized intake system of the gasoline engine

Myron Magats, Zenoviy Goshko, Yuriy Vagula, Anatolii Uzhva
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Abstract

Problem. In recent years, Ukraine has seen a sharp decline in ambient temperature, especially in the winter. Accordingly, this has a negative impact on the performance of car engines (difficult to start and prolonged warm-up), as the lion's share of private sector cars are parked in open areas and are subject to sudden temperature and humidity changes. Therefore, to partially solve this problem, our attention was focused on the air lines of the intake system of the gasoline engine, as this system is easily accessible and does not require significant design changes for its modernization. Goal. The purpose of the work is to ensure the ease of starting the gasoline engine and reduce the time to warm up. Methodology. Operation of the car in the conditions of the lowered temperatures, essentially promotes deterioration of its fuel economy. The basis of such a negative process of fuel consumption is incomplete combustion of the working mixture. And this is the deterioration of spraying and evaporation of fuel and increasing the duration of engine warm-up. At such low ambient temperatures, the effective operation of the car in a garage depends significantly on the method of its preparation (which should at a minimum cost of fuel and energy resources to ensure rapid and reliable engine start and accelerated warm-up). We decided to obtain thermal energy to heat the inlet air at no additional cost. This is the installation of a gasoline engine with a spark ignition of the incandescent coil in the intake air line, which will receive power from the battery. Such modernization of the system does not require major design changes and significant financial investments Unresolved issues remain to assess the effectiveness of the process of heating the air entering the combustion chamber of the engine to create a working mixture. It should be noted that the optimal heating of the engines is most appropriate to carry out (ie heating the coolant and oil in the engine lubrication system) not to the temperature of the operating thermal mode, but to the temperature that ensures its reliable start. Results. The scheme of connection of a heater of intake air in an onboard electric network of the car is presented. The results of the heat balance of the studied gasoline engine (using cold and heated air flow) during its heating are obtained. The optimum temperature of the warmed-up engine at which further economical operation of the car is possible is established. Originality. This spiral heater was first used to heat the intake air charge during the start-up and warm-up of a gasoline engine. Practical value. The developed heating equipment can be used for both gasoline and diesel internal combustion engines. It should be switched on only during engine start-up and warm-up.
现代化汽油机进气系统的研究
问题。近年来,乌克兰的环境温度急剧下降,尤其是在冬季。因此,这对汽车发动机的性能产生了负面影响(难以启动和长时间预热),因为大部分私营部门的汽车停在开阔的地方,容易受到温度和湿度突然变化的影响。因此,为了部分解决这个问题,我们的注意力集中在汽油发动机进气系统的空气管道上,因为这个系统很容易接近,并且不需要为其现代化而进行重大的设计更改。的目标。工作的目的是保证汽油机启动的方便性,减少预热时间。方法。汽车在温度降低的条件下运行,本质上促进了其燃油经济性的恶化。这种燃料消耗负过程的基础是工作混合气的不完全燃烧。这就是燃油喷射和蒸发的恶化以及发动机预热时间的增加。在如此低的环境温度下,车库中汽车的有效运行在很大程度上取决于其制备方法(该方法应以最小的燃料和能源成本确保发动机快速可靠地启动和加速预热)。我们决定在没有额外费用的情况下获得热能来加热进气口。这是一个汽油发动机的安装与火花点火的白炽线圈在进气线,这将从电池接受电力。这种系统的现代化并不需要重大的设计改变和大量的财政投资,尚未解决的问题是评估进入发动机燃烧室的空气加热过程的有效性,以产生工作混合物。需要注意的是,对发动机进行最佳加热(即对发动机润滑系统中的冷却液和机油进行加热)最适宜的温度不是工作热模式下的温度,而是保证其可靠启动的温度。结果。提出了车载电网进气加热器的连接方案。得到了所研究的汽油机在加热过程中的热平衡结果(冷风和热风)。确定了使汽车进一步经济运行的预热发动机的最佳温度。创意。这种螺旋加热器最初用于汽油发动机启动和预热时的进气加热。实用价值。所研制的加热装置可用于汽油内燃机和柴油内燃机。它应该只在发动机启动和预热时打开。
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