دورية أكاديمية

Double compression-expansion engine (DCEE) fueled with hydrogen: Preliminary computational assessment

التفاصيل البيبلوغرافية
العنوان: Double compression-expansion engine (DCEE) fueled with hydrogen: Preliminary computational assessment
المؤلفون: Rafig Babayev, Arne Andersson, Albert Serra Dalmau, Hong G. Im, Bengt Johansson
المصدر: Transportation Engineering, Vol 8, Iss , Pp 100103- (2022)
بيانات النشر: Elsevier, 2022.
سنة النشر: 2022
المجموعة: LCC:Transportation engineering
مصطلحات موضوعية: Hydrogen, Combustion engine, Compression ignition, Double compression-expansion engine (DCEE), CFD, Optimization, Transportation engineering, TA1001-1280
الوصف: Hydrogen (H2) is currently a highly attractive fuel for internal combustion engines (ICEs) owing to the prospects of potentially near-zero emissions. However, the production emissions and cost of H2 fuel necessitate substantial improvements in ICE thermal efficiency. This work aims to investigate a potential implementation of H2 combustion in a highly efficient double compression-expansion engine (DCEE). DICI nonpremixed H2 combustion mode is used for its superior characteristics, as concluded in previous studies. The analysis is performed using a 1D GT-Power software package, where different variants of the DICI H2 and diesel combustion cycles, obtained experimentally and numerically (3D CFD) are imposed in the combustion cylinder of the DCEE. The results show that the low jet momentum, free jet mixing dominated variants of the DICI H2 combustion concept are preferred, owing to the lower heat transfer losses and relaxed requirements on the fuel injection system. Insulation of the expander and removal of the intercooling improve the engine efficiency by 1.3 and 0.5%-points, respectively, but the latter leads to elevated temperatures in the high-pressure tank, which makes the selection of its materials harder but allows the use of cheaper oxidation catalysts. The results also show that the DCEE performance is insensitive to combustion cylinder temperatures, making it potentially suitable for other high-octane fuels, such as methane, methanol, ammonia, etc. Finally, a brake thermal efficiency of 56% is achieved with H2 combustion, around 1%-point higher than with diesel. Further efficiency improvements are also possible with a fully optimized H2 combustion system.
نوع الوثيقة: article
وصف الملف: electronic resource
اللغة: English
تدمد: 2666-691X
Relation: http://www.sciencedirect.com/science/article/pii/S2666691X2200001X; https://doaj.org/toc/2666-691X
DOI: 10.1016/j.treng.2022.100103
URL الوصول: https://doaj.org/article/4752eb72d58f42f4a2893bba64de1b10
رقم الأكسشن: edsdoj.4752eb72d58f42f4a2893bba64de1b10
قاعدة البيانات: Directory of Open Access Journals
الوصف
تدمد:2666691X
DOI:10.1016/j.treng.2022.100103