中国电机工程学报
中國電機工程學報
중국전궤공정학보
ZHONGGUO DIANJI GONGCHENG XUEBAO
2012年
14期
56-64
,共9页
马昕霞%袁益超%黄鸣%刘聿拯
馬昕霞%袁益超%黃鳴%劉聿拯
마흔하%원익초%황명%류율증
多喷嘴喷射器%汽-液两相流%容积喷射系数%均相平衡模型%过冷水%干度
多噴嘴噴射器%汽-液兩相流%容積噴射繫數%均相平衡模型%過冷水%榦度
다분취분사기%기-액량상류%용적분사계수%균상평형모형%과랭수%간도
multi-nozzle ejector%steam-liquid two-phase flow%volume entrainment ratio%homogeneous equilibrium model%sub-cooled water%dryness
对以湿蒸汽为工作流体的多喷嘴汽–液喷射器机制进行研究,利用质量、能量及动量守恒方程建立了喷射器工作特性一维理论模型。模型求解过程中,采用两相临界流均相平衡模型计算单喷射蒸汽喷嘴的临界流速,并利用多喷射速度系数对其修正,得到多喷射蒸汽喷嘴的出口速度;综合考虑Cattadori的壁面力和Howard的喉部压损理论对流动的影响来确定混合室阻力。为验证模型的正确性,设计以湿蒸汽为工作蒸汽的实验台,并采用多喷嘴喷射器作为实验元件。研究结果表明:容积喷射系数随压力比的增大而减小,且增大喷射器的截面比可使容积喷射系数增加,但缩小了喷射器的工作范围;容积喷射系数随蒸汽干度的增大和过冷水温度的升高而减小。理论计算结果与实验值基本相符。
對以濕蒸汽為工作流體的多噴嘴汽–液噴射器機製進行研究,利用質量、能量及動量守恆方程建立瞭噴射器工作特性一維理論模型。模型求解過程中,採用兩相臨界流均相平衡模型計算單噴射蒸汽噴嘴的臨界流速,併利用多噴射速度繫數對其脩正,得到多噴射蒸汽噴嘴的齣口速度;綜閤攷慮Cattadori的壁麵力和Howard的喉部壓損理論對流動的影響來確定混閤室阻力。為驗證模型的正確性,設計以濕蒸汽為工作蒸汽的實驗檯,併採用多噴嘴噴射器作為實驗元件。研究結果錶明:容積噴射繫數隨壓力比的增大而減小,且增大噴射器的截麵比可使容積噴射繫數增加,但縮小瞭噴射器的工作範圍;容積噴射繫數隨蒸汽榦度的增大和過冷水溫度的升高而減小。理論計算結果與實驗值基本相符。
대이습증기위공작류체적다분취기–액분사기궤제진행연구,이용질량、능량급동량수항방정건립료분사기공작특성일유이론모형。모형구해과정중,채용량상림계류균상평형모형계산단분사증기분취적림계류속,병이용다분사속도계수대기수정,득도다분사증기분취적출구속도;종합고필Cattadori적벽면력화Howard적후부압손이론대류동적영향래학정혼합실조력。위험증모형적정학성,설계이습증기위공작증기적실험태,병채용다분취분사기작위실험원건。연구결과표명:용적분사계수수압력비적증대이감소,차증대분사기적절면비가사용적분사계수증가,단축소료분사기적공작범위;용적분사계수수증기간도적증대화과랭수온도적승고이감소。이론계산결과여실험치기본상부。
A one-dimensional theoretical model was built to calculate the performance data of multi-nozzle steam-water two-phase ejector by the equations of mass,energy and momentum conservation for calculation of mechanism of multi nozzle steam-liquid two-phase ejector with wet saturated steam as the working fluid.The critical velocity of the single steam nozzle was computed by homogeneous equilibrium model of two-phase critical flow and amended by the multi-steam nozzle speed coefficient,and then the exit velocity of the multi-steam nozzle was obtained,and the resistance of the mixing section was determined by integrating Cattadori's wall forces model and Howard's "throat" pressure loss theory.In order to verify the proposed model,a set of experimental facility was designed with wet saturated steam as the working fluid and a type of multi-nozzle ejector as the experimental unit.The results show that volume entrainment ratio decreases with the increasing of pressure ratio,that the increasing of cross section of the ejector can increase volume entrainment ratio but cut down the working range of the ejector,and that the volume entrainment ratio decreases with the increasing of the steam dryness and sub-cooled water temperature.The computational results of volume entrainment ratio agree well with the experimental data.