首页> 外文会议>ASME turbo expo >A SIMPLE THERMAL MODEL OF BEARINGS WITH TRANSIENT EFFECTS
【24h】

A SIMPLE THERMAL MODEL OF BEARINGS WITH TRANSIENT EFFECTS

机译:具有瞬态效应的轴承的简单热模型

获取原文

摘要

In thermal management, system-level models provide an understanding of interactions between components and integration constraints - issues which are exacerbated by tighter coupling in both real life and simulation. A simple model of the steady-state thermal characteristics of the bearings in a two-spool turbofan engine has been described in previous work [1], where it was compared with a more comprehensive tribology-based simulation. Since failure is more likely to occur during transient rather than steady-state operating conditions, it is important that transient behavior is also studied. Therefore, development of models capable of capturing transient system-level performance in air vehicles is critical. In the current paper, the former simple model is used for the generation of a method to replicate the transient effects of heat loads within the lubrication system of a gas turbine engine.The simple engine model that defined the lubrication system is representative of a twin-spool, mid-size, high bypass ratio turbofan used in commercial transport. In order to demonstrate the range and versatility of the parametric heat load model, the model is now applied to the transient operation of a low-thrust unmanned aerial vehicle (UAV) engine, similar to that found on the Global Hawk. There are five separate bearings in the oil loop model and four separate oil sump locations. Contributions to the heat load calculations are heat transfer through the bearing housings and friction caused by station temperatures and shaft speeds, respectively. The lubrication system has been simplified by applying general assumptions for a proof-of-concept of the new transient parametric model. The fuel flow rate for the fuel-cooled oil cooler (FCOC) is set via the full authority digital electronic control (FADEC) in the transient engine model which is coupled to the parametric heat load model. Initially, it isassumed that total heat transfer from the bearings to the oil correspond to oil temperature changes of 150-250°F (83-139°C).The results show that successful modeling of the transient behavior on the thermal effects in the bearings of a gas turbine engine using the MATLAB/Simulink environment have been achieved. This is a valuable addition to the previous steady-state simulation, and the combined tools may be used as part of a more sophisticated thermal management system. Because it is so simple and scalable, the tool enables thermal management issues to be addressed in the preliminary design phase of a gas turbine engine development program.
机译:在热管理中,系统级模型提供了对组件与集成约束之间相互作用的理解-在现实生活和仿真中,紧密耦合会加剧这些问题。在先前的工作[1]中已经描述了一个双阀涡扇发动机的轴承稳态热特性的简单模型,并与基于摩擦学的更全面的模拟进行了比较。由于故障更可能在瞬态而不是稳态工作条件下发生,因此研究瞬态行为也很重要。因此,开发能够捕获飞行器瞬态系统级性能的模型至关重要。在当前的论文中,以前的简单模型用于生成一种方法来复制燃气涡轮发动机润滑系统内热负荷的瞬态效应。 定义润滑系统的简单发动机模型代表了商业运输中使用的双阀芯,中型,高旁路比涡轮风扇。为了证明参数热负荷模型的范围和通用性,该模型现在应用于低推力无人机(UAV)发动机的瞬态运行,类似于Global Hawk。油回路模型中有五个单独的轴承,并且油箱位置有四个单独的位置。热负荷计算的贡献是通过轴承箱的热传递以及分别由工位温度和轴速度引起的摩擦。通过对新瞬态参数模型的概念验证应用一般假设,简化了润滑系统。燃油冷却机油冷却器(FCOC)的燃油流量是通过瞬态发动机模型中的完全授权数字电子控制(FADEC)设置的,该模型与参数热负荷模型耦合。最初是 假设从轴承到机油的总热量传递对应于150-250°F(83-139°C)的机油温度变化。 结果表明,使用MATLAB / Simulink环境已经成功地对燃气轮机发动机轴承中的热效应进行了瞬态行为建模。这是对以前的稳态仿真的宝贵补充,并且组合的工具可用作更复杂的热管理系统的一部分。因为它是如此简单且可扩展,所以该工具可以在燃气涡轮发动机开发程序的初步设计阶段解决热管理问题。

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