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Part Load Control for a Shockless Explosion Combustion Cycle

机译:零件负载控制对于无声的爆炸燃烧循环

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Since a significant increase in the efficiency of conventional gas turbines is unlikely due to various reasons, new concepts are needed. One option is to redesign the thermodynamic process itself. Replacing the constant pressure combustion with constant volume combustion (CVC) offers such an increase in efficiency. A promising new process that approximates constant volume combustion is the so-called shockless explosion combustion (SEC). SEC utilizes a homogeneous auto-ignition inside a combustion tube to avoid gas expansion during combustion. An acoustic interaction within the tube is exploited to ensure a self-sustained cyclic operation. For this, chemical and acoustic time-scales have to match. As this is impossible under ambient pressure conditions, for which SEC has been tested experimentally, this study focuses on simulations that mimic the situation of elevated pressure to design a controller. Herein, a control system is introduced within the numerical simulation of SEC that is capable of driving the process to different operating points. It expands on an iterative learning control from recent publications, which adjusts ignition time over the length of the tube. The control system proposed here can be used to realize a part load operation within the observed simulation.
机译:由于由于各种原因,传统燃气轮机效率显着增加,因此需要新的概念。一个选项是重新设计热力学过程本身。用恒定体积燃烧更换恒压燃烧(CVC)提供了这种提高效率。一个有希望的新工艺,即近似恒定的体积燃烧是所谓的无间距爆炸燃烧(秒)。 SEC在燃烧管内使用均匀的自动点火,以避免在燃烧过程中的气体膨胀。利用管内的声学相互作用以确保自持续的循环操作。为此,化学和声学时间尺度必须匹配。由于这在环境压力条件下是不可能的,所以SEC已经通过实验测试,本研究侧重于模拟模仿设计控制器的压力情况的模拟。这里,在能够将过程驱动到不同的操作点的SEC的数值模拟中引入了一种控制系统。它扩展了来自最近出版物的迭代学习控制,这在管道的长度上调整点火时间。这里提出的控制系统可用于实现观察到的模拟中的零件负载操作。

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