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Combat Vehicle Engine Selection Methodology Based On Vehicle Integration Considerations

机译:基于车辆集成考虑的作战车辆发动机选择方法

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Past experience has shown that the power density of an engine itself is not a sufficient guide to determine whether it will meet the power density needs of the intended combat vehicle application. The real need is for the complete propulsion system to be power dense. Here the definition of the propulsion system includes the engine, transmission, cooling system, air filtration system, intake and exhaust ducting, controls, accessories, batteries, fuel system and final drives. The power pack is a subset of the propulsion system and consists of that part of the propulsion system that would be lifted out of the vehicle for service or replacement and would typically consist of at least the engine, and transmission, cooling system, and power pack controls and ideally would also include the air filtration system and accessory drives. Engine operating characteristics will directly impact power density for some propulsion system items. Engine air flow characteristics will impact air filtration and intake and exhaust space and weight claims, engine heat rejection and operating fluid temperatures will impact cooling system size and parasitic fan power required and engine fuel consumption characteristics will impact fuel system space for a given range or mission requirement. These characteristics as well as the physical nature, shape, and configuration of the engine will influence the power density of the overall propulsion system. The purpose of this paper will be to look at the issues of power density for combat vehicle propulsion and look at a methodology to evaluate engine candidates for such applications based on an overall propulsion system power density perspective.
机译:过去的经验表明,发动机本身的功率密度不是一个足够的指导,以确定它是否会满足预期战斗车辆应用的功率密度需求。真正的需要是完整的推进系统是电力密度。这里的推进系统的定义包括发动机,传动,冷却系统,空气过滤系统,进气和排气管道,控制,配件,电池,燃料系统和最终驱动器。电力包是推进系统的子集,并且由推进系统的部分组成,该部分将从车辆中剥离以进行服务或更换,并且通常至少包括发动机,传输,冷却系统和动力包组成控制和理想情况下还包括空气过滤系统和附件驱动器。发动机操作特性将直接冲击某些推进系统的功率密度。发动机气流特性将冲击空气过滤和进气空间和排气空间和重量要求,发动机保温和操作流体温度会影响冷却系统尺寸和寄生风扇功率,并且发动机燃料消耗特性将影响给定范围或使命的燃油系统空间会影响燃料系统空间要求。这些特性以及发动机的物理性质,形状和配置将影响整体推进系统的功率密度。本文的目的是看看战斗车辆推进的功率密度问题,并根据整体推进系统功率密度的角度来看一种评估发动机候选的方法。

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