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Benchmarking a 2016 Honda Civic 1.5-Liter L15B7 Turbocharged Engine and Evaluating the Future Efficiency Potential of Turbocharged Engines

机译:基准测试2016 HONDA Civic 1.5升L15B7涡轮增压发动机,并评估涡轮增压发动机的未来效率潜力

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As part of the U.S. Environmental Protection Agency’s (EPA’s) continuing assessment of advanced light-duty (LD) automotive technologies to support the setting of appropriate national greenhouse gas (GHG) standards and to evaluate the impact of new technologies on in-use emissions, a 2016 Honda Civic with a 4-cylinder 1.5-liter L15B7 turbocharged engine and continuously variable transmission (CVT) was benchmarked. The test method involved installing the engine and its CVT in an engine-dynamometer test cell with the engine wiring harness tethered to its vehicle parked outside the test cell. Engine and transmission torque, fuel flow, key engine temperatures and pressures, and onboard diagnostics (OBD)/Controller Area Network (CAN) bus data were recorded. This article documents the test results for idle, low, medium, and high load engine operation, as well as motoring torque, wide-open throttle (WOT) torque, and fuel consumption during transient operation using both EPA Tier 2 and Tier 3 test fuels. Particular attention is given to characterizing enrichment control during high load engine operation. Results are used to create complete engine fuel consumption and efficiency maps and estimate CO_2 emissions using EPA’s Advanced Light-Duty Powertrain and Hybrid Analysis (ALPHA) full vehicle simulation model, over regulatory drive cycles. The design and performance of the 1.5-liter Honda engine are compared to several other past, present, and future downsized-boosted engines, and potential advancements are evaluated.
机译:作为美国环境保护局(EPA)的一部分(EPA)继续评估先进的轻型(LD)汽车技术,以支持采取适当的全国温室气体(GHG)标准,并评估新技术对使用的影响,具有4缸1.5升L15B7涡轮增压发动机和连续可变变速器(CVT)的2016本田思域被基准测试。试验方法涉及在发动机测力计测试单元中安装发动机及其CVT,发动机线束绑定到其车辆停放在测试电池外部。记录发动机和传动扭矩,燃料流量,关键发动机温度和压力,以及车载诊断(OBD)/控制器区域网络(CAN)总线数据。本文记录了空转,低,介质和高负荷发动机操作的测试结果,以及电动扭矩,宽敞的节流阀(WOT)扭矩,使用EPA层2和第3层测试燃料瞬态操作期间的瞬态操作期间的燃料消耗。特别注意在高负荷发动机操作期间表征富集控制。结果用于使用EPA先进的轻型动力传动系统和混合动力分析(alpha)全车仿真模型来创建完整的发动机燃料消耗和效率图和估算CO_2排放量。 1.5升本田引擎的设计和性能与其他几个过去,现在和未来的缩小增强发动机进行了比较,并评估潜在的进步。

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