论文标题

V形预旋流火焰中的中央再循环区域

Central recirculation zone in a V-shaped premixed swirling flame

论文作者

Wang, Qiuxiao, Ren, Yongzhi, Gu, Mingming, Yu, Bowen, Feng, Xiaoxing, Qi, Fei, Xia, Xi

论文摘要

本文使用同时测量粒子图像速度法(PIV)和CH*化学发光的同时测量了V形预混合的旋转火焰中中央再循环区(CRZ)的出现的实验研究。结果表明,增加雷诺数数(RE)或减少等效比(φ)将有助于CRZ的出现。进一步的分析表明,CRZ特性及其出现受CRZ周围的内剪切层(ISL)的强烈影响,而漩涡强度保持不变。进行尺寸分析以了解基本机制,表明CRZ的出现由非二维参数控制,re_s = |γ| _max d/ν_s,基于最大ISL强度(|γ| _max)定义,ext(d)和kinematic viscsitive(n venematic viscsity(n vant vant),通过使用简单的热量损失模型估算温度和粘度,我们在|γ| _max d-ν_s制度图中显示,带有和没有CRZ的情况通过单个边界线分开,对应于约424的关键RE_S。这验证了所提出的RE_S标准对精美的v型旋转型号的各种条件的旋转式差异,以验证了所提出的RE_S标准的适用性。与大多数将旋转火焰CRZ归因于涡流崩溃的作品不同,目前的作品揭示了ISL的不可忽略的效果,尤其是当ISL被火焰加热削弱时CRZ抑制。

This paper presents an experimental study on the emergence of the central recirculation zone (CRZ) in a V-shaped premixed swirling flame, using simultaneous measurement of particle image velocimetry (PIV) and CH* chemiluminescence. The results show that either increasing the Reynolds number (Re) or decreasing the equivalence ratio (Φ) would facilitate the emergence of CRZ. Further analysis demonstrates that the CRZ characteristics and its emergence are strongly influenced by the inner shear layer (ISL) surrounding the CRZ, while the swirl intensity remains unchanged. Dimensional analysis is performed to understand the underlying mechanism, suggesting the CRZ emergence is controlled by a non-dimensional parameter, Re_s=|γ|_max D/ν_s, defined based on the maximum ISL intensity (|γ|_max), the exit diameter (D), and the kinematic viscosity (ν_s) of the burnt gas. By estimating the temperature and viscosity with a simple heat-loss model, we show in the |γ|_max D-ν_s regime diagram that the cases with and without CRZ are separated by a single boundary line, corresponding to a critical Re_s of about 424. This verifies the applicability of the proposed Re_s criterion to lean-premixed V-shaped swirling flames under various conditions. Unlike most previous works that attribute the CRZ of swirling flames to vortex breakdown, the present work reveals the non-negligible effect of the ISL, especially the CRZ suppression when the ISL is weakened by flame heating.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源