哈尔滨工程大学学报
哈爾濱工程大學學報
합이빈공정대학학보
JOURNAL OF HARBIN ENGINEERING UNIVERSITY
2014年
3期
320-324,377
,共6页
霍岩%邹高万%李树声%郜冶
霍巖%鄒高萬%李樹聲%郜冶
곽암%추고만%리수성%고야
竖直通道%受限侧开缝%旋转火焰%热流体
豎直通道%受限側開縫%鏇轉火燄%熱流體
수직통도%수한측개봉%선전화염%열류체
vertical shaft%confined corner gap%fire whirls%thermal fluid
为了掌握竖直通道内的旋转火焰特性及其与通道壁面开口条件的关系,在9m高的竖通道内通过实验确定了可形成旋转火焰的侧开缝宽度范围,并对通道4m高度以上的侧开缝宽度限制时的旋转热流场进行了数值模拟。研究发现,限制上部侧开缝宽度后会使通道下部的气体流速和火焰附近的旋转速度加大,从而使旋转力对流场的作用较浮力增大,并使流场旋转中心偏移;与上部开缝宽度未受限时相比,开缝受限使其中性面的高度降低,整个中性面的倾角减少至几乎为零,而且在开缝的靠近前端壁面一侧处,流进通道的气体流速由侧开缝未受限时的随着开口宽度的增加而降低变为随着开缝宽度的增加而增加。
為瞭掌握豎直通道內的鏇轉火燄特性及其與通道壁麵開口條件的關繫,在9m高的豎通道內通過實驗確定瞭可形成鏇轉火燄的側開縫寬度範圍,併對通道4m高度以上的側開縫寬度限製時的鏇轉熱流場進行瞭數值模擬。研究髮現,限製上部側開縫寬度後會使通道下部的氣體流速和火燄附近的鏇轉速度加大,從而使鏇轉力對流場的作用較浮力增大,併使流場鏇轉中心偏移;與上部開縫寬度未受限時相比,開縫受限使其中性麵的高度降低,整箇中性麵的傾角減少至幾乎為零,而且在開縫的靠近前耑壁麵一側處,流進通道的氣體流速由側開縫未受限時的隨著開口寬度的增加而降低變為隨著開縫寬度的增加而增加。
위료장악수직통도내적선전화염특성급기여통도벽면개구조건적관계,재9m고적수통도내통과실험학정료가형성선전화염적측개봉관도범위,병대통도4m고도이상적측개봉관도한제시적선전열류장진행료수치모의。연구발현,한제상부측개봉관도후회사통도하부적기체류속화화염부근적선전속도가대,종이사선전력대류장적작용교부력증대,병사류장선전중심편이;여상부개봉관도미수한시상비,개봉수한사기중성면적고도강저,정개중성면적경각감소지궤호위령,이차재개봉적고근전단벽면일측처,류진통도적기체류속유측개봉미수한시적수착개구관도적증가이강저변위수착개봉관도적증가이증가。
With the purpose to increase the understanding of the relation between fire whirls and the corner gap of the vertical shaft , experiments for the fire whirl were carried out on a vertical shaft at a height of 9 m and the width of the corner gap of the fire whirl formation was verified .Thermal fields were numerically simulated when the width of the corner gap over 4 m was confined .The study shows that the airflow rate at the lower part of the shaft and the rotation speed near the flame are a little higher after the width of the upper corner gap is confined .The effect of the whirling force on the thermal field is more than buoyancy , and the deflection of the center of rotation is made .Com-pared to when the width of the upper corner gap is not confined , the height of the neutral plane is lower and the an-gle of the neutral plane decreases to almost zero when the corner gap is confined .In addition, at the wall of the cor-ner gap near the front of the shaft , the flow velocity increases as the width of the corner gap increases , instead of decreasing with the increase of the width of the corner gap when the upper corner gap is not confined .