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Study of Aircraft with Hybrid Laminar Flow Control Based on Exergy Analysis

机译:基于Deergy分析的混合层流控制飞机研究

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Laminar flow control is a technology that can improve fuel consumption by reducing friction drag acting on an aircraft surface. When a laminar flow control system is applied to an aircraft, two aspects of benefit and penalty have to be considered, that is the benefit of drag reduction and the penalty of weight increase due to the system installation. However, conventional aircraft conceptual design methods independently consider these different properties. Thus, there are difficulties in explicitly comprehending the influences of these parameters on design results. In this paper, exergy, which is the maximum effective work of a system, is considered. By using exergy, this paper aims to discuss the weight, energy and aerodynamic characteristics of an aircraft collectively. In particular, aircraft with a hybrid laminar control (HLFC) system are focused on in this paper and a quantitative evaluation of the benefits and penalties of the HLFC system is considered. For this purpose, a multi objective optimization study of aircraft with HLFC was conducted using the concept of exergy. Three different classes of aircraft, that is, B737, B767 and B777 class aircraft were considered. The results indicated that for larger class aircraft (B777 class) with HLFC, the reduction of exergy destruction is dominantly observed compared with smaller class aircraft (B737 class). Even on a short range flight, benefits of the HLFC are obtained for larger class aircraft, but there are few benefits for smaller class aircraft.
机译:层流量控制是一种技术,可以通过减少在飞机表面上的摩擦拖动来改善燃料消耗。当层流量控制系统应用于飞机时,必须考虑两个受益和惩罚的各个方面,这是减少减少的益处,由于系统安装,重量增加的惩罚。然而,传统的飞机概念设计方法独立地考虑这些不同的属性。因此,在明确理解这些参数对设计结果的影响时存在困难。在本文中,考虑了Deerteny,即系统的最大有效工作。通过使用Deergy,本文旨在共同讨论飞机的重量,能量和空气动力学特征。特别地,具有混合层控制(HLFC)系统的飞机集中于本文中,并考虑了HLFC系统的益处和惩罚的定量评估。为此目的,使用Deertgy的概念进行HLFC的飞机的多目标优化研究。考虑了三种不同的飞机,即B737,B767和B777级飞机。结果表明,对于较大的飞机(B777类)与HLFC,与较小的飞机(B737类)相比,占主导地位出来的漏洞破坏的减少。即使在短程飞行中,为较大的飞机获得了HLFC的益处,但较少班飞机的益处很少。

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