首页> 外文会议>International Conference on Computer Engineering and Technology;ICCET 2010 >Numerical Investigation on the Performance of Spark Ignition Engine Used for Electricity Production Fuelled by Natural Gas/Liquefied Petroleum Gas-Biogas Blends with Modelica
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Numerical Investigation on the Performance of Spark Ignition Engine Used for Electricity Production Fuelled by Natural Gas/Liquefied Petroleum Gas-Biogas Blends with Modelica

机译:天然气/液化石油气-沼气与Modelica混合燃料发电的火花点火发动机性能的数值研究

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Since the physical and chemical characteristics of biogas,some problems will occur in its applications in engine. The biogas engine and its performance parameters analysis is regarded as research object,the biogas engine model library was built based on the object-oriented language Modelica. The effect of compression ratio,ignition advance angle and the combustion duration on the performance of biogas engine was analyzed through simulation study. The optimization of operating parameters and design parameters of biogas engine was performed. Natural gas (33%,67% and 100%) and liquefied petroleum gas (5%,10% and 15%) were added to the biogas and were simulated as the fuel of SI engine. The effects of natural gas/liquefied petroleum gas-biogas blends on the performance of spark-ignition engine used for electricity production were numerical investigated. The results suggest that: There is an improvement in brake thermal efficiency and brake power with the addition of natural gas/liquefied petroleum gas in biogas. The feature of reusable and objectoriented of Modelica will enhance the modeling and simulation of biogas engine performance greatly not only in accuracy but simulation efficiency,this would be efficient for the theoretical design and the optimum work of the biogas fuelled engine.
机译:由于沼气的物理和化学特性,其在发动机中的应用会出现一些问题。以沼气发动机及其性能参数分析为研究对象,基于面向对象语言Modelica建立了沼气发动机模型库。通过仿真研究,分析了压缩比,点火提前角和燃烧持续时间对沼气发动机性能的影响。对沼气发动机的运行参数和设计参数进行了优化。将天然气(33%,67%和100%)和液化石油气(5%,10%和15%)添加到沼气中,并模拟为SI发动机的燃料。数值研究了天然气/液化石油气-沼气混合物对用于发电的火花点火发动机性能的影响。结果表明:通过在沼气中添加天然气/液化石油气,可以提高制动热效率和制动功率。 Modelica的可重用性和面向对象的特性将极大地提高沼气发动机性能的建模和仿真,不仅在准确性上而且在模拟效率上也将大大提高,这对于沼气发动机的理论设计和优化工作将是有效的。

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