Optical spray investigations and 3D-CFD numerical analysis of the nozzle flow of a methanol HPDI injector for maritime applications

Petra Rektorik, Florian Schmid, Johann Wloka, Bert Buchholz
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Abstract

This article presents results of the optical spray investigations of a methanol high-pressure direct injector for maritime applications. The injector is a two-in-one fuels injector, with a diesel path to inject diesel centrally for the diesel mode or to inject a small pilot amount of diesel for igniting methanol. The methanol will be injected via three nozzles, which are placed around the central diesel needle. The experimental studies were performed at a pressurized injection chamber with three different injection pressures, two fuels and three nozzle designs to evaluate first the basic spray characteristics of the spray of this two-in-one fuel’s injector concept with four needles as well as the impacts of the varied parameters. For the injection analysis, ethanol was used instead of methanol due to the extensive safety requirements for methanol. Furthermore, a 3D-CFD numerical analysis of the nozzle flow of the methanol path is presented in this article. Correlations between the calculated nozzle flow and the experimental measured spray data are given.

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海上应用甲醇HPDI喷射器喷嘴流动的光学喷雾研究和3D-CFD数值分析
本文介绍了用于海上应用的甲醇高压直接喷射器的光学喷雾研究结果。该喷油器是一个二合一燃油喷油器,具有柴油通道,用于在柴油模式下集中喷射柴油,或喷射少量引燃量的柴油以点燃甲醇。甲醇将通过三个喷嘴注入,这些喷嘴位于中央柴油针周围。实验研究是在具有三种不同喷射压力、两种燃料和三种喷嘴设计的加压喷射室中进行的,以首先评估这种具有四个针头的二合一燃料喷射器概念的喷雾的基本喷雾特性以及不同参数的影响。对于注射分析,由于对甲醇有广泛的安全要求,因此使用乙醇代替甲醇。此外,本文还对甲醇通道喷嘴流动进行了3D-CFD数值分析。给出了计算的喷嘴流量与实验测量的喷雾数据之间的相关性。
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