Javascript must be enabled to continue!
INVESTIGATION ON THE AIR-GAS CHARACTERISTICS OF AIR-HYDROGEN MIXER DESIGNED FOR DUAL FUEL – ENGINES
View through CrossRef
High smoke emissions, nitrogen oxide and particulate matter typically produced by diesel engines. Diminishing the exhausted emissions without doing any significant changes in their mechanical configuration is a challenging subject. Thus, adding hydrogen to the traditional fuel would be the best practical choice to ameliorate diesel engines performance and reduce emissions. The air hydrogen mixer is an essential part of converting the diesel engine to work under dual fuel mode (hydrogen-diesel) without any engine modification. In this study, the Air-hydrogen mixer is developed to get a homogenous mixture for hydrogen with air and a stoichiometric air-fuel ratio according to the speed of the engine. The mixer depends on the balance between the force exerted on the head surface of the valve and the opposite forces (the spring and friction forces) and its relation to decrease and increase the fuel inlet. Computational fluid dynamics (CFD) analysis software was utilised to study the hydrogen and airflow behaviour inside the mixer, established by 3.2 L engine. The Air-hydrogen mixer is examined with different speeds of engine1000, 2000, 3000 and 4000 RPM. Results showed air-hydrogen mixture was homogenous in the mixer. Furthermore, the stoichiometric air-fuel ratio was achieved according to the speed of the engine, the developed mixer of the AIR-Hydrogen mixing process provides high mixing homogeneity and engines with stoichiometric air-fuel ratios, which subsequently contributes to the high levels of efficiency in engine operation. In summary, the current study intends to reduce the emissions of gases and offer a wide range of new alternative fuels usage. While the performance of the diesel engine with the new air-hydrogen mixer needs to be tested practically.
OU Scientific Route
Title: INVESTIGATION ON THE AIR-GAS CHARACTERISTICS OF AIR-HYDROGEN MIXER DESIGNED FOR DUAL FUEL – ENGINES
Description:
High smoke emissions, nitrogen oxide and particulate matter typically produced by diesel engines.
Diminishing the exhausted emissions without doing any significant changes in their mechanical configuration is a challenging subject.
Thus, adding hydrogen to the traditional fuel would be the best practical choice to ameliorate diesel engines performance and reduce emissions.
The air hydrogen mixer is an essential part of converting the diesel engine to work under dual fuel mode (hydrogen-diesel) without any engine modification.
In this study, the Air-hydrogen mixer is developed to get a homogenous mixture for hydrogen with air and a stoichiometric air-fuel ratio according to the speed of the engine.
The mixer depends on the balance between the force exerted on the head surface of the valve and the opposite forces (the spring and friction forces) and its relation to decrease and increase the fuel inlet.
Computational fluid dynamics (CFD) analysis software was utilised to study the hydrogen and airflow behaviour inside the mixer, established by 3.
2 L engine.
The Air-hydrogen mixer is examined with different speeds of engine1000, 2000, 3000 and 4000 RPM.
Results showed air-hydrogen mixture was homogenous in the mixer.
Furthermore, the stoichiometric air-fuel ratio was achieved according to the speed of the engine, the developed mixer of the AIR-Hydrogen mixing process provides high mixing homogeneity and engines with stoichiometric air-fuel ratios, which subsequently contributes to the high levels of efficiency in engine operation.
In summary, the current study intends to reduce the emissions of gases and offer a wide range of new alternative fuels usage.
While the performance of the diesel engine with the new air-hydrogen mixer needs to be tested practically.
Related Results
The Extension of Opportunities of Dual Fuel Diesel-Hydrogen Engine by Usage of Hydrotreated Vegetable Oil
The Extension of Opportunities of Dual Fuel Diesel-Hydrogen Engine by Usage of Hydrotreated Vegetable Oil
"This paper investigates further development of a diesel-hydrogen dual fuel concept of engine of passenger car size via hydrotreated vegetable oil (HVO). The diesel-hydrogen concep...
New Design of a CNG-H2-AIR Mixer for Internal Combustion Engines: An Experimental and Numerical Study
New Design of a CNG-H2-AIR Mixer for Internal Combustion Engines: An Experimental and Numerical Study
Several studies have aimed to convert diesel engines to dual- or tri-fuel engines to improve their fuel economy and reduce the emissions from diesel engine, however, most of these ...
Fuel cells and hydrogen economy
Fuel cells and hydrogen economy
Fuel cells with applications ranging from power generation to transportation need hydrogen as fuel. Hydrogen is not a source of energy, and hydrogen is not a readily available fuel...
On new requirements for the environmental indicators of agricultural tractors in the Customs Union
On new requirements for the environmental indicators of agricultural tractors in the Customs Union
BACKGROUND: Decisions of the Council of the Eurasian Economic Commission No. 127 of October 29, 2021. and No. 89 dated 04/15/2022. amendments have been made to the Technical Regula...
Improving Efficiency and Power Density of Hydrogen Engines of Positive Ignition Single-Fuel and Compression Ignition Dual-Fuel designs
Improving Efficiency and Power Density of Hydrogen Engines of Positive Ignition Single-Fuel and Compression Ignition Dual-Fuel designs
The latest advances in power density and efficiency of internal combustion engines (ICEs), both diesel direct injection (DI) compression ignition (CI), and gasoline positive igniti...
Numerical simulation and experimental study of an efficient multi-orifice-impinging transverse (MOIT) jet mixer
Numerical simulation and experimental study of an efficient multi-orifice-impinging transverse (MOIT) jet mixer
Abstract
In order to accomplish efficient mixing of liquids with large differences in flow rates, an efficient multi-orifice impinging transverse (MOIT) jet mixer...
Analisis Perbandingan Fuel Consumtption Pada Pesawat boeing B737-800 Rute CGK-DMK dan CGK-AMQ
Analisis Perbandingan Fuel Consumtption Pada Pesawat boeing B737-800 Rute CGK-DMK dan CGK-AMQ
Fuel consumption merupakan perhitungan konsumsi bahan bakaryang digunakan pesawat udara melalui dua engine, perhitungan ini akan mengetahui banyaknya fuel yang digunakan oleh pesaw...
Unlocking Fuel Gas Reduction to Enhance Sustainability in Oil and Gas Operations
Unlocking Fuel Gas Reduction to Enhance Sustainability in Oil and Gas Operations
Abstract
Methane emissions pose a critical challenge in the oil and gas industry due to their high global warming potential. The purpose of this paper is to prese...

