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Ethanol-Powered Combustion Experimental Study in a Rapid Compression Machine

机译:快速压缩机中的乙醇供电燃烧实验研究

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Nowadays, many researches are being carried out to replace the diesel by alternative fuels. Biodiesel and ethanol are strong candidates for this purpose. However, the experimental study of the combustion of biofuels in engines is not an easy task. Due to the large differences between the properties of the new fuels and the conventional diesel, radical changes may be needed in current engines, developed specifically for the fossil fuel. So, the experimental study of ethanol compression ignition (CI) combustion is not simple to be obtained in conventional engines. Therefore, some experimental apparatus, such as a rapid compression machine (RCM), are useful to conduct this kind of study. This paper describes the RCM adaptations made in order to run CI combustion tests using Ethanol-Powered (ED95) and Diesel (S50) for different compression ratios and injection timing. The RCM was equipped with a high pressure common-rail diesel injection system, a piezoelectric sensor, its amplifier and a high speed camera. The idea is to use the results obtained with this system in the future to adapt engines and make correlations with engine tests. The main objective is to develop new technologies to guide the design of new engines and new fuel formulation, quickly reducing the time and costs in the development process. The results show the behavior of combustion with varying the compression ratio and the injection timing. The moment of injection associated with higher compression ratios allows the optimization of the combustion process, increasing thermal efficiency, thus reducing emissions of exhaust gases.
机译:如今,正在进行许多研究以通过替代燃料更换柴油。为此目的,生物柴油和乙醇是强大的候选人。然而,在发动机中的生物燃料燃烧的实验研究不是一件容易的任务。由于新燃料的性质和传统柴油之间的差异,目前的发动机可能需要自由基改变,专门为化石燃料开发。因此,在常规发动机中不能在常规发动机中获得乙醇压缩点火(CI)燃烧的实验研究。因此,一些实验装置,例如快速压缩机(RCM),可用于进行这种研究。本文介绍了使用乙醇供电(ED95)和柴油(S50)来运行CI燃烧试验的RCM适应性,用于不同的压缩比和喷射正时。 RCM配备了高压共轨柴油喷射系统,压电传感器,其放大器和高速相机。该想法是在将来使用该系统获得的结果,以使发动机调整并与发动机测试进行相关性。主要目标是开发新技术,以指导新兴发动机和新燃料制定的设计,迅速减少开发过程中的时间和成本。结果表明,燃烧的行为,改变压缩比和喷射正时。与较高压缩比相关的注射矩允许优化燃烧过程,增加热效率,从而减少废气排放。

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