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Experimental and numerical study on self-sustaining performance of a 30-kW micro gas turbine generator system during startup process

机译:启动过程中30千瓦微燃气发电机系统自我维持性能的实验与数值研究

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摘要

The safe startup of micro gas turbine (MGT) generator system is the premise of normal operation. The whole start-up process contains motor startup, ignition, speed acceleration, motor switching to gener-ator and power acceleration. Motor switching to generator happens at the self-sustaining state, which is significant to safe start-up process. However, characteristics of MGT generator system at self-sustaining state are hardly to investigate due to the lack of performance maps and complete experiments. Therefore, this work analyzed start-up schedule and presented a theoretical and experimental study on the self-sustaining performance of MGT generator system, based on the self-designed 30 kW MGT generator system built in Jiangjin Turbocharger Plant, China. The self-sustaining speed boundary and fuel con-sumption area is determined from the aspects of safe startup. A novel principle for determining the self-sustaining point (SSP) is proposed. Results show that the self-sustaining state can be achieved only when speed is over 26,750 rpm, and the SSP is determined at the speed of 30,750 rpm based on the proposed principle. Finally, the self-sustaining TIT and natural gas flow are compared with the experimental data, with two relative errors both almost within 4%. This method is instructive to the MGT generator system startup process. (c) 2021 Elsevier Ltd. All rights reserved.
机译:微燃气轮机(MGT)发电机系统的安全启动是正常操作的前提。整个启动过程包含电机启动,点火,速度加速,电机切换到生成器和电源加速度。电动机切换到发电机的自我维持状态发生,这对于安全的启动过程很重要。然而,由于缺乏性能图和完整的实验,MGT发电机系统的特点几乎无法调查。因此,这项工作分析了启动计划,并介绍了MGT发电机系统的自我维持性能的理论和实验研究,基于江金涡轮增压器厂,江津涡轮增压器厂的自动设计30 kW MGT发电机系统。自维持速度边界和燃料消耗区域是从安全启动的方面确定的。提出了确定自维持点(SSP)的新颖原理。结果表明,只有在速度超过26,750 rpm时,才能实现自维持状态,并且基于所提出的原理,SSP以30,750rpm的速度确定。最后,将自维持岩石和天然气流与实验数据进行比较,两个相对误差几乎在4%以内。该方法对MGT生成器系统启动过程有效。 (c)2021 elestvier有限公司保留所有权利。

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