首页> 外文会议>SAE Aerospace Systems and Technology Conference >Advantages of the Dynamic Simulation for the Thermal Management Systems Design
【24h】

Advantages of the Dynamic Simulation for the Thermal Management Systems Design

机译:热管理系统设计动态仿真的优点

获取原文

摘要

Advance thermal management systems are being developed to optimise the energy balance within aircraft. This is being done in parallel to the concept of the More Electrical Aircraft (MEA) which has been developing throughout the last decades. The objective of such complex systems is to use efficiently the hot and cold sources available within the air vehicle to reduce the engine fuel consumption. A reduction of electrical power consumption, minimisation of weight, optimisation of aircraft aerodynamics (for example RAM inlets area minimisation) and the reduction of bleed air from engine all result in a fuel consumption saving. Any thermal management system to optimise energy consumption implies complex and advanced systems. This requires a high engineering effort to design and integrate the system within an aircraft due to the large quantity of variables and interfaces that need to be taken into account. Models and simulations are essential from the beginning of the system development and design phase. However, such models are also useful along the entire system life cycle (i.e. testing, verification, in service, system modifications). They must be evolved and improved to adapt to each phase and the results need to be checked with laboratory and prototype data. In addition, the use of dynamic models over classic steady models permits designers to take into account the thermal inertias in order to dimension the systems with a more realistic behaviour in accordance to the intended operation. It also allows considering the different flight mission profiles that the air vehicle shall cope with and includes as variables the heat loads that need to be dissipated. This leads to an optimised system for the real scenario and not an oversized one against the worst case scenario. The present paper describes the use of a dynamic model to concept, dimension and design a thermal management system.
机译:正在开发提前热管理系统以优化飞机内的能量平衡。这是与在过去几十年中一直在发展的更多电机(MEA)的概念进行的。这种复杂系统的目的是有效地使用空气车内可用的热和冷源,以降低发动机燃料消耗。减少电力消耗,最小化重量,飞机空气动力学的优化(例如RAM入口区域最小化)和来自发动机的出血空气的减少所有导致燃料消耗节省。任何优化能耗的热管理系统都意味着复杂和高级的系统。这需要高工程努力来设计和集成飞机内的系统由于需要考虑的大量变量和接口。模型和模拟是系统开发和设计阶段的开始。然而,这种模型沿整个系统生命周期(即测试,验证,服务,系统修改)也很有用。必须进化和改进,以适应每个阶段,并且需要使用实验室和原型数据进行检查。此外,在经典稳定模型上使用动态模型允许设计人员考虑热惯性,以便根据预期操作来维度具有更现实的行为的系统。它还允许考虑不同的飞行使命轮廓,即空气车辆应应对并包括变量,该变量需要耗散的热负荷。这导致了真实场景的优化系统,而不是针对最坏情况的超大案例。本文介绍了动态模型对概念,维度和设计热管理系统的使用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号