首页> 外文会议>AIAA/ASME/SAE/ASEE joint propulsion conference >Common Core Engine Design for Multiple Applications using a Concurrent Multi-Design Point Approach
【24h】

Common Core Engine Design for Multiple Applications using a Concurrent Multi-Design Point Approach

机译:使用并发多设计点方法的多种应用的常见核心发动机设计

获取原文

摘要

Common core engine technology has been pursued by industry for decades due to the potential of reducing costs for design, development, and operation when applying the same core over a family of engines for multiple applications. This paper investigates the design space for a next-generation technology level common core (high pressure system) for multiple applications at each engine's flight conditions and power requirements. To evaluate the feasibility of a common core between different applications, or market segments, three engine applications for a similar small engine power class were considered: a turboshaft helicopter, a regional turboprop commercial transport, and a regional turbofan commercial transport. To perform this design space exploration, the Numerical Propulsion System Simulation and Weight Analysis of Turbine Engines (WATE++) were used within a Multi-Design Point (MDP) framework. The MDP approach ensures that all design and off-design requirements and constraints for a given engine are simultaneously met. Within MDP, this paper demonstrates how candidate cores can be evaluated concurrently for all three engine applications. This ensures the same core is implemented on each application and allows flexibility for exploring the common core design space, while providing an added degree of freedom in evaluating performance trade-offs. In order to determine how well the common core is suited across applications, the "ideal" cycle design is first selected for each engine independently. This paper discusses the trade-offs and decisions that must be made in order to select a "100% fully common" core while aiming to incur minimum performance penalties compared to independently designed engines. The results show significant penalties for a common core operated across multiple applications, which motivates future work to explore trade-offs for different levels of commonality, development cost, and robust design when selecting a common core for multiple engine applications.
机译:由于在为多个应用程序家庭应用同一核心时,行业常用的核心发动机技术已经由工业追求数十年的潜力。本文调查了下一代技术级普通核心(高压系统)的设计空间,用于各发动机的飞行条件和功率要求的多种应用。为了评估不同应用程序或市场段之间共同核心的可行性,考虑了类似的小型发动机电力级的三种发动机应用:涡轮轴直升机,区域涡轮螺旋桨商业运输,以及区域涡轮箱商业运输。为了执行这种设计空间探索,在多种设计点(MDP)框架内使用涡轮发动机(WATE ++)的数值推进系统仿真和重量分析。 MDP方法确保同时满足给定引擎的所有设计和非设计要求和约束。在MDP中,本文演示了如何对所有三个发动机应用同时进行候选核心。这可确保在每个应用程序上实现相同的核心,并允许灵活性探索共同的核心设计空间,同时在评估性能权衡时提供额外的自由度。为了确定常见核心适用于应用的程度,首先为每个发动机独立选择“理想”循环设计。本文讨论了必须进行的权衡和决策,以便与独立设计的发动机相比,在旨在产生最低绩效处罚的同时选择“100%完全共同”的核心。结果表明,在多种应用程序中运行的共同核心的严重处罚,该核心在为多个发动机应用选择共同核心时,激励未来的常见级别,以探索不同级别的普通级,开发成本和强大设计的权衡。

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