Evaluation of the Performance Curves of the 4-Stroke, Spark-Ignited, Single-Cylinder Engine Altered to Consume Ethanol

Q4 Social Sciences Revista de Gestao Social e Ambiental Pub Date : 2023-10-18 DOI:10.24857/rgsa.v17n10-037
Lucas Zaia Fantinatti, Christian Scapualtempo Strobel, Stephan Hennings Och, Márcio Fontana Catapan
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 Theoretical framework: Utilizing the literature through research in books, dissertations, articles, and standards.
 
 Method: This study involves the performance of a gasoline engine converted to ethanol (renewable fuel) through quantitative research and the evaluation of test results on the 5.5 hp single-cylinder 4-stroke spark-ignition engine (B4T model) with each proposed fuel in the research.
 
 Results and Conclusion: During the analysis, the necessary values were measured to create the power and torque curves using different types of national fuels. The spark-ignition engine was connected to a dynamometer and tested with regular gasoline (Type C with 27.5% ethanol content), premium gasoline, podium® gasoline, and anhydrous ethanol 95% (the gasoline engine was modified to operate with ethanol). In the case of the renewable fuel, ethanol, the results for the spark-ignition engine (Otto cycle) showed an increase of 0.48 hp in power and 0.11 kgf.m in torque compared to gasoline. The ethanol-powered engine is a viable alternative and is considered a clean energy source when compared to traditional fuels (such as gasoline).
 
 Research Implications: Issues such as sustainability, renewable energies, environmentally friendly fuels, greenhouse gas emissions, and concerns about the environment have become increasingly common and evident in the global market. This reflects a global concern for environmental preservation and the future of the planet. For academia, the constant search for new or alternative sources will always be a challenge.
 
 Originality/Value: The proposal of an ethanol engine contributes to the reduction of pollutant gas emissions and environmental damage because ethanol, derived from sugarcane, absorbs carbon monoxide and carbon dioxide during the plant's development. This attenuates emissions since, during the ethanol burning process, the gases are only returned to the atmosphere (carbon and derivatives), unlike the burning of fossil fuels, which adds more gases to the atmosphere. Another point is that it provides an additional option for end consumers.","PeriodicalId":38210,"journal":{"name":"Revista de Gestao Social e Ambiental","volume":"876 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-10-18","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Revista de Gestao Social e Ambiental","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.24857/rgsa.v17n10-037","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"Social Sciences","Score":null,"Total":0}
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Abstract

Objective: To conduct tests on the B4T-5.5 hp spark-ignition engines (Otto cycle) with conventional fuels (types of gasoline) and, after modification, to test with renewable fuels (Ethanol) on the dynamometer in the engineering laboratory of Branco Motores Ltda., following SAE J1995 and SAE J1940 standards. Analyze the power and torque curves for each tested fuel. Theoretical framework: Utilizing the literature through research in books, dissertations, articles, and standards. Method: This study involves the performance of a gasoline engine converted to ethanol (renewable fuel) through quantitative research and the evaluation of test results on the 5.5 hp single-cylinder 4-stroke spark-ignition engine (B4T model) with each proposed fuel in the research. Results and Conclusion: During the analysis, the necessary values were measured to create the power and torque curves using different types of national fuels. The spark-ignition engine was connected to a dynamometer and tested with regular gasoline (Type C with 27.5% ethanol content), premium gasoline, podium® gasoline, and anhydrous ethanol 95% (the gasoline engine was modified to operate with ethanol). In the case of the renewable fuel, ethanol, the results for the spark-ignition engine (Otto cycle) showed an increase of 0.48 hp in power and 0.11 kgf.m in torque compared to gasoline. The ethanol-powered engine is a viable alternative and is considered a clean energy source when compared to traditional fuels (such as gasoline). Research Implications: Issues such as sustainability, renewable energies, environmentally friendly fuels, greenhouse gas emissions, and concerns about the environment have become increasingly common and evident in the global market. This reflects a global concern for environmental preservation and the future of the planet. For academia, the constant search for new or alternative sources will always be a challenge. Originality/Value: The proposal of an ethanol engine contributes to the reduction of pollutant gas emissions and environmental damage because ethanol, derived from sugarcane, absorbs carbon monoxide and carbon dioxide during the plant's development. This attenuates emissions since, during the ethanol burning process, the gases are only returned to the atmosphere (carbon and derivatives), unlike the burning of fossil fuels, which adds more gases to the atmosphere. Another point is that it provides an additional option for end consumers.
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四冲程火花点火单缸发动机油耗乙醇性能曲线的评价
目的:对布兰科汽车有限公司工程实验室的B4T-5.5 hp火花点火发动机(奥托循环)进行常规燃料(汽油类型)和改造后可再生燃料(乙醇)的测试。,遵循SAE J1995和SAE J1940标准。分析每种测试燃料的功率和扭矩曲线。 & # x0D;理论框架:通过研究书籍、论文、文章和标准来利用文献。 & # x0D;方法:本研究通过定量研究汽油发动机转化为乙醇(可再生燃料)的性能,并对5.5马力单缸四冲程火花点火发动机(B4T型)使用研究中提出的每种燃料的试验结果进行评估。& # x0D;结果与结论:在分析过程中,测量了使用不同类型国家燃料的功率和扭矩曲线的必要值。将火花点火发动机连接到测功机上,用普通汽油(乙醇含量为27.5%的C型汽油)、优质汽油、podium®汽油和95%的无水乙醇(汽油发动机经过改装以使用乙醇)进行测试。在使用可再生燃料乙醇的情况下,火花点火发动机(奥托循环)的结果显示,功率增加了0.48马力,kg / gf增加了0.11。与汽油相比,扭矩为M。乙醇动力发动机是一种可行的替代方案,与传统燃料(如汽油)相比,它被认为是一种清洁能源。& # x0D;研究意义:诸如可持续性、可再生能源、环境友好型燃料、温室气体排放和对环境的关注等问题在全球市场上变得越来越普遍和明显。这反映了全球对环境保护和地球未来的关注。对于学术界来说,不断寻找新的或替代的资源将永远是一个挑战。 & # x0D;独创性/价值:乙醇发动机的建议有助于减少污染物气体排放和环境破坏,因为从甘蔗中提取的乙醇在植物发展过程中吸收一氧化碳和二氧化碳。这减少了排放,因为在乙醇燃烧过程中,气体只返回到大气中(碳和衍生物),而不像燃烧化石燃料那样向大气中增加更多的气体。另一点是,它为终端消费者提供了一个额外的选择。
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来源期刊
Revista de Gestao Social e Ambiental
Revista de Gestao Social e Ambiental Social Sciences-Geography, Planning and Development
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