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MODEL BASED DESIGN AND OPTIMIZATION FOR LARGE BORE ENGINES: SOME INDUSTRIAL CASE STUDIES

机译:大型发动机的基于模型的设计和优化:一些工业案例研究

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Large bore reciprocating internal combustion engines are used in a wide variety of applications such as power generation, transportation, gas compression, mechanical drives, and mining. Each application has its own unique requirements that influence the engine design & control strategy. The system architecture & control strategy play a key role in meeting the requirements. Traditionally, control design has come in at a later stage of the development process, when the system design is almost frozen. Furthermore, transient performance requirements have not always been considered adequately at early design stages for large engines, thus limiting achievable controller performance. With rapid advances in engine modeling capability, it has now become possible to accurately simulate engine behavior in steady-states and transients. In this paper, we propose an integrated model-based approach to system design & control of reciprocating engines and outline ideas, processes and real-world case studies for the same. Key benefits of this approach include optimized engine performance in terms of efficiency, transient response, emissions, system and cost optimization, tools to evaluate various concepts before engine build thus leading to significant reduction in development time & cost.
机译:大口径往复式内燃机广泛用于发电,运输,气体压缩,机械驱动和采矿等应用。每个应用程序都有其自己的独特要求,这些要求会影响发动机的设计和控制策略。系统架构和控制策略在满足要求方面起着关键作用。传统上,控制设计是在开发过程的后期阶段进行的,那时系统设计几乎被冻结了。此外,对于大型发动机,在早期设计阶段并不总是充分考虑瞬态性能要求,从而限制了可实现的控制器性能。随着发动机建模能力的飞速发展,现在已经可以精确地模拟稳态和瞬态下的发动机行为。在本文中,我们提出了一种基于模型的集成方法来进行往复式发动机的系统设计和控制,并概述了其思想,过程和实际案例研究。这种方法的主要好处包括在效率,瞬态响应,排放,系统和成本优化方面优化了发动机性能,在发动机制造之前评估各种概念的工具,从而显着减少了开发时间和成本。

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