首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >DYNAMIC SIMULATION OF ENERGY SYSTEMS: COMPARISON OF A PHYSICS-BASED AGAINST TIME CONSTANT BASED APPROACH APPLIED TO A MICROTURBINE TEST RIG
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DYNAMIC SIMULATION OF ENERGY SYSTEMS: COMPARISON OF A PHYSICS-BASED AGAINST TIME CONSTANT BASED APPROACH APPLIED TO A MICROTURBINE TEST RIG

机译:能量系统的动态仿真:基于物理的基于时间常数的微涡轮试验台方法的比较

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As distributed systems arise as the dominate approach in energy production, new and time-effective methods to study global configuration of small scale generation systems have to be discovered. This work proposes a comparison between two disparate approaches to microturbine modelling. The target system is a modified Turbec T100 microturbine coupled with an external vessel, which aims to simulate the dynamic global behavior of a fuel cell gas turbine hybrid system generator. The first model is based on first principles with ordinary differential equations to capture the dynamic performance of the turbine and it is developed with Matlab/Simulink environment. The second model is based on a simplified-physics time constant approach and it is developed with Excel/Visual Basic software, thus aiming at a viable tool for distributed applications, despite any lose in accuracy. Both models have been verified against the experimental data of the microturbine test rig, and compared in terms of computational efforts, modelling flexibility, prediction accuracy.
机译:随着分布式系统成为能源生产中的主要方法,必须寻找研究小型发电系统全局配置的新的,高效的方法。这项工作提出了两种不同的微型涡轮机建模方法之间的比较。目标系统是与外部容器连接的改良型Turbec T100微型涡轮机,旨在模拟燃料电池燃气轮机混合动力系统发电机的动态全局行为。第一个模型基于带有一般微分方程的第一原理来捕获涡轮机的动态性能,并且是在Matlab / Simulink环境下开发的。第二个模型基于简化的物理时间常数方法,并使用Excel / Visual Basic软件开发,因此尽管精确度有所降低,但它还是针对分布式应用程序的可行工具。两种模型均已针对微型涡轮机试验台的实验数据进行了验证,并在计算工作量,建模灵活性和预测准确性方面进行了比较。

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