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首页> 外文期刊>International journal of hydrogen energy >Variation of spark plug type and spark gap with hydrogen and methanol added gasoline fuel: Performance characteristics
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Variation of spark plug type and spark gap with hydrogen and methanol added gasoline fuel: Performance characteristics

机译:用氢气和甲醇加入汽油燃料的火花塞式和火花间隙的变化:性能特征

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In this study, the performance of different spark plugs was tested with varied spark gap sizes in a spark-ignited engine. Gasoline fuel was enriched with hydrogen and methanol to evaluate how much they affect the performance of the engine. The engine tests were performed with a four-stroke, single-cylinder, naturally aspirated, variable compression ratio (VCR) spark ignition engine. 1500 rpm engine speed and MBT for spark timing were applied throughout all experiments. Iridium, platinum and conventional (copper) spark plugs were tested using 3 different spark plug gaps (SPG) (0.6 mm, 0.8 mm, 1 mm). Depending on the experimental condition, hydrogen was added with 3 l/min of flow rate and methanol was used with 10% of volume fraction in the total liquid fuel. As for performance criteria, brake power (BP) and brake specific fuel consumption (BSFC) values were obtained from the test engine. According to the findings, platinum and iridium spark plugs had shown better performance than conventional spark plugs. The increment of SPG size improved the performance of the engine, too. On the other hand, despite methanol addition to gasoline fuel reduced performance, this loss could be compensated by hydrogen enrichment. Additionally, multiple linear regression (MLR) technique was applied through experimental results to obtain a linear relationship between explanatory variables (inputs) and response variables (outputs). An MLR model was set with four selected input variables (spark plug type, hydrogen flow rate, methanol ratio, and spark gap) to estimate BP and BSFC. Prediction equations showed that experimentally obtained results were in good agreement with MLR results. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,在火花点火发动机中使用不同火花隙的尺寸进行了不同火花塞的性能。富含汽油燃料富含氢和甲醇,以评估它们影响发动机性能的程度。用四冲程,单缸,天然吸气,可变压缩比(VCR)进行发动机测试。在所有实验中应用了1500 rpm发动机速度和用于火花定时的MBT。使用3种不同的火花塞间隙(SPG)(0.6mm,0.8mm,1mm)测试铱,铂和常规(铜)火花塞。根据实验条件,加入氢气加入3L / min的流速,甲醇用于总液体燃料中的10%体积分数。对于性能标准,从测试发动机获得制动功率(BP)和制动特定燃料消耗(BSFC)值。根据调查结果,铂和铱星插头的性能比传统火花塞更好。 SPG尺寸的增量也提高了发动机的性能。另一方面,尽管甲醇添加到汽油燃料降低的性能下,但这种损失可以通过氢富集来补偿。另外,通过实验结果应用多个线性回归(MLR)技术,以获得解释变量(输入)和响应变量(输出)之间的线性关系。使用四种选择的输入变量(火花塞类型,氢气流速,甲醇比例和火花隙)设定了MLR模型,以估算BP和BSFC。预测方程表明,实验获得的结果与MLR结果一致。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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