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首页> 外文期刊>Journal of Mechanical Science and Technology >Optimization the design of venturi gas mixer for syngas engine using three-dimensional CFD modeling
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Optimization the design of venturi gas mixer for syngas engine using three-dimensional CFD modeling

机译:三维CFD建模优化合成气发动机文丘里混合气设计

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摘要

A venturi mixer prototype is developed for mixing air and synthesis gas or “syngas” as a fuel. Syngas is recognized as a viable energy source worldwide, particularly for stationary power generation. It has a very low energy density, so a mixer with λ (ratio of actual to stoichiometric air-fuel ratio) in the range of 1.1 to 1.7 is expected. In this study, three-dimensional computational fluid dynamics (CFD) modeling is used to investigate and analyze the influence of the throat diameter, gas chamber thickness and gas exits diameter on mixer characteristics and performance. Attention is focused on the effect of venturi mixer geometry on the air-fuel ratio, pressure loss and mixing quality. Based on the numerical results, an optimized design of venturi gas mixer is made. The optimized design has λ in the range of 1.2 to 1.3, and gives very good mixing quality and acceptable pressure loss. The CFD results are validated with experimental data. The CFD results show good agreement with experimental data.
机译:开发了文丘里混合器原型,用于混合空气和合成气或“合成气”作为燃料。合成气在世界范围内被认为是可行的能源,特别是在固定式发电方面。它具有非常低的能量密度,因此可以预期λ(实际与化学计量的空燃比之比)在1.1到1.7之间的混合器。在这项研究中,三维计算流体动力学(CFD)建模用于调查和分析喉口直径,气室厚度和出气口直径对混合器特性和性能的影响。注意的是文丘里混合器几何形状对空燃比,压力损失和混合质量的影响。根据数值结果,对文氏管气体混合器进行了优化设计。优化设计的λ在1.2至1.3的范围内,并具有非常好的混合质量和可接受的压力损失。 CFD结果已通过实验数据验证。 CFD结果显示与实验数据吻合良好。

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