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Effect of the Switching Times on the Operating Behavior of a Shockless Explosion Combustor

机译:切换时间对无声爆炸燃烧器的操作行为的影响

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In the past, a wide range of investigations are made in order to increase the efficiency gain in gas turbines by using constant volume combustion. In comparison to detonation-based concepts, such as pulse detonation engine and rotation detonation engine, a new promising way was proposed by Klein and Paschereit and firstly assessed by Bobusch et al. (Combust Sci Technol 186(10-11):1680-1689 (2014), [1]), the so-called shockless explosion combustion (SEC). The principle is based on a quasi-homogeneous auto-ignition process that leads to an approximate constant volume combustion (aCVC). In order to achieve a quasi-homogeneous auto-ignition, it is necessary to achieve constant ignition delay times along the combustor. The combustion process in the SEC is similar to the one in internal combustion engines, namely Homogeneous Charge Compression Ignition (HCCI). This paper focuses on the use of wastegates to actively control filling and flow motion in the combustor dedicated to perform quasi-homogeneous auto-ignition. The results clearly show the ability to actively control the fuel distribution and purging time in the combustor which is an important step in the evolution of the SEC.
机译:过去,通过使用恒定的体积燃烧来提高燃气涡轮机的效率增益的广泛研究。与基于爆炸的概念相比,例如脉冲爆震发动机和旋转爆轰引擎,Klein和Paschereit提出了一种新的有希望的方式,并首先通过Bobusch等人评估。 (燃烧SCI Technol 186(10-11):1680-1689(2014),[1]),所谓的无间距爆炸燃烧(秒)。该原理基于准均匀的自动点火过程,其导致近似恒定的体积燃烧(ACVC)。为了实现准均匀的自动点火,需要沿着燃烧器实现恒定点火延迟时间。秒中的燃烧过程类似于内燃机中的一个,即均匀的电荷压缩点火(HCCI)。本文侧重于使用浪费,积极控制燃烧器中的灌装和流动运动,专用于执行准均匀自动点火。结果清楚地表明了在燃烧器中主动控制燃料分布和吹扫时间的能力,这是秒的演化中的一个重要步骤。

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