State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, Anhui 230027, China.
J Hazard Mater. 2011 Apr 15;188(1-3):369-74. doi: 10.1016/j.jhazmat.2011.01.122. Epub 2011 Feb 4.
The influence of the initial fuel temperature on the burning behavior of n-heptane pool fire was experimentally studied at the State Key Laboratory of Fire Science (SKLFS) large test hall. Circular pool fires with diameters of 100mm, 141 mm, and 200 mm were considered with initial fuel temperatures ranging from 290 K to 363 K. Burning rate and temperature distributions in fuel and vessel wall were recorded during the combustion. The burning rate exhibited five typical stages: initial development, steady burning, transition, bulk boiling burning, and decay. The burning rate during the steady burning stage was observed to be relatively independent of the initial fuel temperature. In contrast, the burning rate of the bulk boiling burning stage increases with increased initial fuel temperature. It was also observed that increased initial fuel temperature decreases the duration of steady burning stage. When the initial temperature approaches the boiling point, the steady burning stage nearly disappears and the burning rate moves directly from the initial development stage to the transition stage. The fuel surface temperature increases to its boiling point at the steady burning stage, shortly after ignition, and the bulk liquid reaches boiling temperature at the bulk boiling burning stage. No distinguished cold zone is formed in the fuel bed. However, boiling zone is observed and the thickness increases to its maximum value when the bulk boiling phenomena occurs.
在火灾科学国家重点实验室(SKLFS)的大型试验厅中,对初始燃料温度对正庚烷池火燃烧行为的影响进行了实验研究。研究中考虑了直径为 100mm、141mm 和 200mm 的圆形池火,初始燃料温度范围为 290K 至 363K。在燃烧过程中记录了燃料和容器壁中的燃烧速率和温度分布。燃烧速率呈现出五个典型阶段:初始发展、稳定燃烧、过渡、整体沸腾燃烧和衰减。在稳定燃烧阶段,燃烧速率被观察到相对独立于初始燃料温度。相比之下,整体沸腾燃烧阶段的燃烧速率随着初始燃料温度的升高而增加。还观察到初始燃料温度的升高会缩短稳定燃烧阶段的持续时间。当初始温度接近沸点时,稳定燃烧阶段几乎消失,燃烧速率直接从初始发展阶段进入过渡阶段。在点火后不久,燃料表面温度就会升高到其沸点,而在整体沸腾燃烧阶段,液体整体达到沸点。在燃料床中未形成明显的冷区。然而,在发生整体沸腾现象时,会观察到沸腾区,并且其厚度会增加到最大值。