In this work, methods for effective calculation and simulation for the high-pressure dual-fuel combustion process are developed, with the help of which the experimental effort in the development of optimized engines can be significantly reduced. It starts with the fuel combination methane as the main fuel and diesel as the pilot fuel. With the help of experimental data, the simulation models are parameterized, verified and validated. Subsequently, the model will be extended to the application of hydrogen and ammonia as main fuels.
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In this work, methods for effective calculation and simulation for the high-pressure dual-fuel combustion process are developed, with the help of which the experimental effort in the development of optimized engines can be significantly reduced. It starts with the fuel combination methane as the main fuel and diesel as the pilot fuel. With the help of experimental data, the simulation models are parameterized, verified and validated. Subsequently, the model will be extended to the application of...
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