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A new design concept for 2-Stroke aircraft Diesel engines

机译:二冲程飞机柴油机的新设计理念

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摘要

High power density, low weight, compact dimensions, high efficiency as well as reliability are the key factors in designing and dimensioning piston engines for General Aviation and Unmanned Aerial Vehicle (UAV) power plants. Despite of new available technologies, conventional solutions are still struggling to fulfill simultaneously all those requirements.\udThe paper explores the application of a new design of 2-Stroke externally scavenged engines to aircraft. The new concept basically consists in the use of a patented rotary valve for controlling the flow through a set of inlet ports, enabling supercharging and the achievement of extremely high power densities compared to conventional solutions. The scavenging is realized by using an external pump, made up of a further cylinder, whose piston is connected to the same crankshaft. The piston pump allows the crankcase to be used as a conventional oil sump, and greatly improves the crankshaft balance. No poppet valves or camshafts need to be installed, since the flow is driven by piston-controlled ports and by two sets of reed valves.\udThe engine can adopt two types of combustion system: Gasoline Direct Injection (GDI) for SI operations, and Direct Injection Common Rail for Diesel cycle. The paper is focused on the last version, since it can run on standard aircraft fuel. \udThe Diesel engine has three cylinders and three piston pumps, for a total displacement of 1.5 liter The engine is turbocharged and inter-cooled, in order to reach a power target, at sea level, of 150 kW@4000 rpm. Another fundamental target is the minimum power of 100 kW, at the altitude of 20,000 feet. \udThe paper reviews the design of the engine and presents the numerical prediction of the key performance parameters.
机译:高功率密度,低重量,紧凑的尺寸,高效率以及可靠性是为通用航空和无人机(UAV)发电厂设计和确定活塞发动机尺寸的关键因素。尽管有可用的新技术,但传统的解决方案仍难以同时满足所有这些要求。\ ud本文探讨了新型设计的2冲程外部扫气发动机在飞机上的应用。新概念主要包括使用获得专利的旋转阀来控制通过一组进气口的流量,与传统解决方案相比,可实现增压并实现极高的功率密度。扫气是通过使用由另一个气缸组成的外部泵来实现的,该另一个泵的活塞连接到同一曲轴。活塞泵使曲轴箱可用作常规的油底壳,并大大改善了曲轴平衡。由于流量是由活塞控制的端口和两组舌簧阀驱动的,因此无需安装提升阀或凸轮轴。\ ud发动机可以采用两种燃烧系统:用于SI操作的汽油直喷(GDI);以及直喷共轨用于柴油循环。本文主要针对最新版本,因为它可以使用标准飞机燃料运行。柴油发动机具有三个气缸和三个活塞泵,总排量为1.5升。该发动机经过涡轮增压和中冷,以便在海平面达到150 kW @ 4000 rpm的功率目标。另一个基本目标是在20,000英尺的高度上最小功率为100 kW。 \ ud本文回顾了发动机的设计,并提出了关键性能参数的数值预测。

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