首页> 外文期刊>Measurement Science & Technology >Thermographic phosphor heat flux measurements of laminar methane/air flame impinging on a cylindrical surface
【24h】

Thermographic phosphor heat flux measurements of laminar methane/air flame impinging on a cylindrical surface

机译:热成像磷热通量测量层甲烷/空气火焰撞击圆柱形表面

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The stagnation point heat fluxes of methane/air flames impinging normal on a cylindrical surface were determined experimentally. Light induced phosphorescence from thermographic phosphors was used to investigate surface temperatures at the stagnation point from a nearly 1D laminar premixed flame burning against a water-cooled ceramic tube. The ceramic tube was coated with 1.1% chromium-doped alumina (ruby) at the impingement area and excited with a green light-emitting diode (LED) to measure the surface temperature. The flame temperature profiles were also measured with a thermocouple of type R (Pt/Pt + 13% Rh). Effects on variations in cold gas velocity (0.1 m s(-1)-0.5 m s(-1)) relative to the flame speed, equivalence ratio (Phi = 0.85-1.2), burner to impingement surface spacing (H/d = 0.5-2) and surface curvature are reported. The stagnation point heat fluxes are strongly influenced by the flame stabilization mechanism, which changes from burner to wall stabilization, which also is seen from the measured flame temperature profiles. Increasing the cold gas velocity of the reactants leads to higher stagnation point heat fluxes. In addition, decreasing the distance between the burner and impingement surface increases the heat flux, with higher heat fluxes recorded for a tube compared to a flat plate.
机译:实验确定瞬间在圆柱形表面上撞击正常的甲烷/空气火焰的停滞点热通量。来自热成像磷光体的光诱导的磷光研究在与水冷陶瓷管燃烧的近1D层状预混火焰的停滞点处的表面温度。将陶瓷管在撞击区域涂覆有1.1%铬掺杂的氧化铝(红宝石),并用绿色发光二极管(LED)激发以测量表面温度。还用R(Pt / Pt + 13%RH)的热电偶测量火焰温度曲线。对冷气速度的变化(0.1ms(-1)-0.5ms(-1))相对于火焰速度,等效比(PHI = 0.85-1.2),燃烧器以冲击表面间隔(H / D = 0.5- 2)报道了表面曲率。停滞点热通量受到火焰稳定机制的强烈影响,该火焰稳定机构从燃烧器变为壁稳定,这也从测量的火焰温度型材看出。增加反应物的冷气速度导致更高的停滞点热通量。另外,减小燃烧器和冲击表面之间的距离增加了热通量,与平板相比,为管记录的较高的热量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号