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Articles

Performance of a diesel engine with water emulsified diesel prepared with optimized process parameters

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Pages 687-701 | Received 12 Jun 2018, Accepted 09 May 2019, Published online: 23 May 2019
 

ABSTRACT

An attempt has been made to produce stable water–diesel emulsion with optimal formulation and process parameters and to evaluate the performance and emission characteristics of diesel engine using this stable water–diesel emulsion. A total of 54 samples were prepared with varying water/diesel ratio, surfactant amount and stirring speed and water separation was recorded after 24 and 48 hr of emulsification. The recorded data were used in artificial neural network (ANN)-particle swarm optimization (PSO) technique to find the optimal parameters to produce water–diesel emulsion for engine testing. The predicted optimal parameters were found as 20% water to diesel ratio, 0.9% surfactant and 2200 rpm of stirrer for a water separation of 14.33% in one day with a variation of 6.54% against the actual value of water separation. Water–diesel emulsion fuel exhibited similar fuel properties as base fuel. The peak cylinder gas pressure, peak pressure rise rate and peak heat release rate for water–diesel were found higher as compared to diesel at medium to full engine loads. The improved air-fuel mixing in water–diesel emulsion enhanced brake thermal efficiency (BTE) of engine. The absorption of heat by water droplets present in water–diesel emulsion led to reduced exhaust gas temperature (EGT). With water–diesel emulsion fuel, the mean carbon monoxide (CO), unburned hydrocarbon and oxides of nitrogen (NOx) emissions reduced by 8.80, 39.60, and 26.11%, respectively as compared to diesel.

Highlights

  • Optimal parameters to produce water–diesel emulsion predicted using ANN-PSO technique

  • Water–diesel emulsion exhibited fuel properties similar to diesel

  • Higher cylinder pressure and heat release rate observed for water–diesel emulsion

  • BTE improved with water–diesel emulsion

  • CO, UHC and NOx emissions reduced with water–diesel emulsion

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