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  1. Internal Combustion (IC) engine fundamentals and performance metrics, computer modeling supported by in-depth understanding of fundamental engine processes and detailed experiments in engine design optimization.

  2. Engine fundamentals and performance metrics, computer modeling supported by in-depth understanding of fundamental engine processes and detailed experiments in engine design optimization. Day 1 (Engine fundamentals) Part 1: IC Engine Review, 0, 1 and 3-D modeling Part 2: Turbochargers, Engine Performance Metrics Day 2 (Combustion Modeling)

  3. Internal Combustion (IC) engine fundamentals and performance metrics, computer modeling supported by in-depth understanding of fundamental engine processes and detailed experiments in engine design optimization.

  4. Feb 20, 2024 · For this reason, this study experimentally evaluates the effects of varying equivalence ratios on the combustion efficiency of gasoline/diesel dual-fueled CI combustion in a 0.4-L single-cylinder engine under low-speed (1500 rpm) and low-load (total LHV 570 J/str) conditions.

  5. Feb 26, 2024 · This paper provides a comprehensive Computational Investigation on the influence of Equivalence Ratio (ϕ) variations on the performance and emissions of a DF-HCCI engine, utilising a blend of 90% n-dodecane (premix) and 10% ethanol (spry injection).

  6. Jan 1, 2002 · A two-fuel-component mixture developed with the method is used to measure two-dimensional fuel equivalence ratios in an optically accessible direct-injection spark-ignition engine. Results are compared with the equivalence ratio distribution of a mixture with a single fuel component.

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  8. Apr 1, 2022 · Exergy analysis in SI engine with in-house two-zone quasi-dimensional model. Effects of equivalence, compression ratio and residual gas on exergy terms. Influence of zones and chemical exergy, and irreversibility evaluation. Higher irreversibility and chemical exergy with rich mixtures.

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