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Hybrid Simulation Facility Based on Commercial 100 kWe Micro Gas Turbine

机译:基于商用100 kWe微型燃气轮机的混合仿真设施

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A new high temperature fuel cell-micro gas turbine physical emulator has been designed and installed in the framework of the European Integrated Project "FELICITAS" at the Thermochemical Power Group (TPG) laboratory located at Savona. The test rig is based on a commercial 100 kWe recuperated micro gas turbine (mGT) (Turbec TWO) modified to be connected to a modular volume designed for physical emulation of fuel cell stack influence. The test rig has been developed starting with a complete theoretical analysis of the micro gas turbine design and off-design performance and with the definition of the more flexible layout to be used for different hybrid system (molten carbonate fuel cell or solid oxide fuel cell) emulation. The layout of the system (connecting pipes, valves, and instrumentation, in particular mass flow meter locations) has been carefully designed, and is presented in detail in this paper. Particular attention has been focused on the viscous pressure loss minimization: (i) to reduce the unbalance between compressor and expander, (ii) to maintain a high measurement precision, and (iii) to have an effective plant flexibility. Moreover, the volume used to emulate the cell stack has been designed to be strongly modular (different from a similar system developed by U.S. Department Of Energy-National Energy Technology Laboratory) to allow different volume size influence on the mGT rig to be easily tested. The modular high temperature volume has been designed using a computational fluid dynamics (CFD) commercial tool (FLUENT). The CFD analysis was used (i) to reach a high level of uniformity in the flow distribution inside the volume, (ii) to have a velocity field (m/s) similar to the one existing inside the emulated cell stack, and (iii) to minimize (as possible) the pressure losses. The volume insulation will also allow to consider a strong thermal capacity effect during the tests. This paper reports the experimental results of several tests carried out on the rig (using the mGT at electrical stand-alone conditions with the machine control system operating at constant rotational speed) at different load values and at both steady-state and transient conditions.
机译:一种新的高温燃料电池-微型燃气轮机物理仿真器已在萨沃纳热化学动力组(TPG)实验室的欧洲综合项目“ FELICITAS”的框架中设计并安装。该试验台基于商业化的100 kWe换热式微型燃气轮机(mGT)(Turbec TWO),该涡轮机经改装可连接至设计用于物理模拟燃料电池堆影响的模块化容积。试验台的开发是从对微型燃气轮机设计和非设计性能的完整理论分析开始,并定义了可用于不同混合动力系统(熔融碳酸盐燃料电池或固体氧化物燃料电池)的更灵活布局的定义。仿真。系统的布局(连接管道,阀门和仪表,尤其是质量流量计的位置)经过精心设计,并在本文中进行了详细介绍。特别关注的是粘性压力损失的最小化:(i)减少压缩机和膨胀机之间的不平衡,(ii)保持较高的测量精度,以及(iii)具有有效的设备灵活性。此外,用于模拟电池堆的体积已设计为高度模块化(与美国能源部国家能源技术实验室开发的类似系统不同),从而可以轻松测试对mGT钻机的不同体积影响。模块化高温容积是使用计算流体力学(CFD)商业工具(FLUENT)设计的。使用CFD分析(i)在体积内部的流动分布中达到高度均匀的水平,(ii)具有类似于仿真电池堆内部存在的速度场(m / s)的速度场,以及(iii )以最大程度地减少压力损失。体积绝缘还可以在测试期间考虑强烈的热容量效应。本文报告了在不同负载值以及稳态和瞬态条件下,在钻机上进行的多项测试的实验结果(在独立运行的电气条件下使用mGT,且机器控制系统以恒定转速运行)。

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