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analysis of water injection into high-temperature mixture of ...

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41Theoretically, the <strong>high</strong> useful compression ratio, which gives the <strong>high</strong>estperformance parameters, occurred at the compression ratio ( r)<strong>of</strong> 12. It is clearlyshown that as the compression ratio increases the engine performance parametersincrease. And the cylinder volume increases, mass <strong>of</strong> fuel-air inside the cylinderincreases leading to increase in the performance parameters [6].4.4.2 Performance <strong>of</strong> <strong>water</strong> <strong>injection</strong> model at different equivalence ratio ( φ )This simulation test was run at 2,000 rpm, equivalence ratio <strong>of</strong> 0.8 and <strong>water</strong><strong>injection</strong>-fuel ratio ( XW) <strong>of</strong> 10 with the different <strong>water</strong> <strong>injection</strong> duration angle ( θW)while using different equivalence ratios ( φ ), varied from 0.8, 0.9, 1.0, 1.1 and 1.2,respectively.IMEP (MPa)1.3501.3001.2501.2001.1501.1001.0501.0000.950Normal10 CA20 CA 30 CA0.8 0.9 1.0 1.1 1.2Equivalence ratioFIGURE 4-17 IMEP-Equivalence ratios with the <strong>water</strong> <strong>injection</strong> duration angle45Thermal efficiency (%)434038353330Normal10 CA20 CA 30 CA0.8 0.9 1.0 1.1 1.2Equivalence ratioFIGURE 4-18 Thermal efficiency-Equivalence ratios withthe <strong>water</strong> <strong>injection</strong> duration angle

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