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Raw Experimental Dataset —Impact of Split Injection Strategy on Performance, Emissions, and Combustion of a CRDI Diesel Engine Utilising Chlorella vulgaris Biodiesel–Butanol Blends with Soapnut Bio-Nanoparticle (SNPs) Additives

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Figshare2026-03-14 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Raw_Experimental_Dataset_b_Impact_of_Split_Injection_Strategy_on_Performance_Emissions_and_Combustion_of_a_CRDI_Diesel_Engine_Utilising_Chlorella_vulgaris_Biodiesel_Butanol_Blends_with_Soapnut_Bio-Nanoparticle_SNPs_Additives_b_/31726459
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This dataset contains raw experimental data supporting a manuscript submitted to the International Journal of Ambient Energy (Taylor & Francis). Data include brake thermal efficiency (BTE), brake specific fuel consumption (BSFC), in-cylinder pressure, heat release rate, ignition delay, and exhaust emissions (CO, HC, NOx, CO₂, and filter smoke number) for four fuel configurations — neat diesel (D100), B20 (20% Chlorella vulgaris biodiesel + 80% diesel), B20+75D5BU (20% biodiesel + 75% diesel + 5% n-butanol), and B20+75D5BU+SN60ppm (with 60 ppm soapnut bio-nanoparticles) — tested on a single-cylinder, four-stroke CRDI engine at 200 bar injection pressure with pilot injection timings of 19°, 21°, 23°, and 25° bTDC and a fixed dwell angle of 15° crank angle.
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2026-03-14
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