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首页> 外文期刊>Applied Energy >Single and double Wiebe function combustion model for a heavy-duty diesel engine retrofitted to natural-gas spark-ignition
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Single and double Wiebe function combustion model for a heavy-duty diesel engine retrofitted to natural-gas spark-ignition

机译:用于天然气火花点火的重型柴油发动机的单和双Wiebe函数燃烧模型

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摘要

The conversion of existing diesel engines to natural-gas spark-ignition operation would reduce the dependence on oil imports, reduce the burden on refining capacity, and increase U.S. energy security. The use of simple combustion models such as the Wiebe function to analyze or predict the combustion process in such retrofitted engines can accelerate and optimize the engine conversion. This study compared the standard single Wiebe function to a double-Wiebe function to investigate if the latter will improve the predicted mass fraction burned and, if yes, which of formats of the duel-Wiebe function in the literature described the best the mass fraction burned in such converted engine. The results showed that while the standard Wiebe function could not predict the mass fraction, a double-Wiebe function (one for the fast burn inside the piston bowl and a second for the slower burning process inside the squish region) predicted with good accuracy the mass fraction burned, heat release rate, in-cylinder pressure, and combustion phasing in such converted engines (similar to 90% reduction in error) for the conditions investigated here, especially if the start of the second Wiebe was delayed. Moreover, such a condition-dependent model as the double-Wiebe model is limited to the operating conditions used for determining the model parameters. However, the model can be developed into a condition-independent model if enough experimental data or CFD simulations are available to find the unique set (or sets) of parameters that minimizes the error at most conditions.
机译:将现有的柴油机转换为天然气火花点火操作将减少对石油进口的依赖,减轻炼油能力的负担,并提高美国的能源安全性。使用简单的燃烧模型(例如Wiebe函数)来分析或预测此类改装发动机中的燃烧过程可以加速和优化发动机转换。这项研究将标准的单Wiebe函数与双Wiebe函数进行了比较,以研究后者是否可以改善燃烧的预测质量分数;如果可以,文献中对决-Wiebe函数的哪种格式描述了燃烧的质量分数最好在这样的转换引擎中。结果表明,虽然标准的Wiebe函数无法预测质量分数,但双Wiebe函数(一个用于活塞碗内部的快速燃烧,另一个用于压缩区域内部的较慢燃烧过程)可以精确地预测质量。在此处研究的条件下,尤其是如果延迟第二台Wiebe的启动时,此类转换发动机的燃烧分数,放热率,缸内压力和燃烧定相(类似于误差减少90%)。而且,诸如双威贝模型的这种依赖于条件的模型限于用于确定模型参数的操作条件。但是,如果有足够的实验数据或CFD模拟可用来找到在大多数情况下将误差最小化的唯一参数集,则可以将该模型开发为与条件无关的模型。

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