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Research on Opposed Piston Two-Stroke Engine for Unmanned Aerial Vehicle by Thermodynamic Simulation

机译:热力学仿真对无人空中车辆对抗活塞二冲程发动机的研究

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The Opposed Piston Two-Stroke (OPTS) engine has many advantages on power density, fuel tolerance, fuel flexibility and package space. A type of self-balanced opposed-piston folded-crank train two-stroke engine for Unmanned Aerial Vehicle (UAV) was studied in this paper. AVL BOOST was used for the thermodynamic simulation. It was a quasi-steady, filling-and-emptying flow analysis -- no intake or exhaust dynamics were simulated. The results were validated against experimental data. The effects of high altitude environment on engine performance have been investigated. Moreover, the matching between the engine and turbocharger was designed and optimized for different altitude levels. The results indicated that, while the altitude is above 6000m, a multi-stage turbocharged engine system need to be considered and optimized for the UAV.
机译:相对的活塞双程(选择)发动机对功率密度,燃料容差,燃料柔韧性和包装空间具有许多优点。本文研究了一种用于无人机飞行器(UAV)的自平衡的对抗活塞折叠式曲柄动机两冲程发动机。 AVL Boost用于热力学模拟。它是一种准稳定,填充和排空的流量分析 - 没有模拟进气或排气动力学。结果针对实验数据验证。研究了高海拔环境对发动机性能的影响。此外,为不同的高度水平设计和优化了发动机和涡轮增压器之间的匹配。结果表明,虽然高度高于6000米,但需要考虑和优化多级涡轮增压发动机系统。

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