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气液两相流体冷却技术应用的研究 被引量:4
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作者 战国宸 闫通海 弓海霞 《应用科技》 CAS 2001年第7期1-3,共3页
通过气液两相流体冷却技术在金属切削加工中应用的对比试验 ,论述了该项新型高效冷却技术的优越性 ,并对其进一步推广应用进行了展望。
关键词 气液两相流体 冷却技术 应用 金属切削加工
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气液两相流体润滑技术在滚动轴承中的试验研究 被引量:1
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作者 田爱华 王毅坚 +1 位作者 关金贵 田驰 《吉林化工学院学报》 CAS 2003年第3期73-75,共3页
介绍了一种新型的润滑技术———气液两相流体润滑,对该润滑技术在滚动轴承中的应用进行了试验研究,证明气液两相流体润滑在高速、超高速滚动轴承的应用中具有良好的性能,并将油气润滑与油雾润滑作了对比.
关键词 气液两相流体 润滑技术 滚动轴承 试验研究 油雾润滑 滑油
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气液两相流体润滑机理的试验研究 被引量:7
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作者 何立东 闫通海 王凡 《润滑与密封》 CAS CSCD 北大核心 1996年第1期33-36,共4页
本文对气液两相流体的润滑机理进行了试验研究和理论分析.在金属切削加工中应用了气液两相流体润滑技术,进行了切削温度、切削刀、光洁度等项目的对比试验,提出了气液两相流体润滑的新模型——气液两相膜.并推荐了分析两相膜粘度的关系式.
关键词 气液两相流体 润滑 试验
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亚临界与近临界压力下垂直上升管内气-液两相流体摩擦阻力特性试验研究
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作者 赵于 毕勤成 吕海财 《陕西科技大学学报(自然科学版)》 2015年第1期144-149,共6页
以超临界600mW直流锅炉水冷壁管内气-液两相流体为研究对象,试验段尺寸为25×4 000mm,材质为1Cr18Ni9Ti.在压力为11~21MPa,质量流速为600~1 200kg·m^-2s^-1,干度为0~1的工况范围内,研究了工质压力、质量流速及质量含气率等... 以超临界600mW直流锅炉水冷壁管内气-液两相流体为研究对象,试验段尺寸为25×4 000mm,材质为1Cr18Ni9Ti.在压力为11~21MPa,质量流速为600~1 200kg·m^-2s^-1,干度为0~1的工况范围内,研究了工质压力、质量流速及质量含气率等参数对单相及气-液两相流体摩擦阻力的影响.在本文所获得的试验数据与理论分析的基础上,拟合出可用于工程实际中计算水冷壁管内气-液两相流体摩擦阻力的关系式. 展开更多
关键词 -流体 水冷壁 摩擦阻力特性
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气液两相泵及其在发酵饲料行业中的应用
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作者 边秋力 《粮油加工(电子版)》 1998年第1期28-28,34,共2页
气液两相泵及其在发酵饲料行业中的应用@边秋力¥中国农业机械化科学研究院气液两相泵及其在发酵饲料行业中的应用边秋力中国农业机械化科学研究院国际上气液两相泵的研究始于60年代,工业化应用始于80年代,目前德国与美国已形成... 气液两相泵及其在发酵饲料行业中的应用@边秋力¥中国农业机械化科学研究院气液两相泵及其在发酵饲料行业中的应用边秋力中国农业机械化科学研究院国际上气液两相泵的研究始于60年代,工业化应用始于80年代,目前德国与美国已形成系列化生产,应用也较广泛。在国内,气液两... 展开更多
关键词 发酵饲料 气液两相流体 结构特点
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应用光纤传感技术校正两相流体流量测量误差
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作者 徐荣 叶培大 《光电子.激光》 EI CAS CSCD 2000年第6期617-619,622,共4页
本文提出了应用光纤传感技术对两相流体流量测量误差进行补偿的新方法。传感机理为两相流体折射率对弯曲光纤的传输光功率的调制原理。在分析光纤弯曲波导传输光能损耗与弯曲半径、外界折射率等因素关系的基础上 ,提出 U型结构的光纤传... 本文提出了应用光纤传感技术对两相流体流量测量误差进行补偿的新方法。传感机理为两相流体折射率对弯曲光纤的传输光功率的调制原理。在分析光纤弯曲波导传输光能损耗与弯曲半径、外界折射率等因素关系的基础上 ,提出 U型结构的光纤传感器系统 ,并将其应用于两相流体流量测量的误差矫正中 ,进行了初步研究和探讨。 展开更多
关键词 光纤传感 气液两相流体 误差校正 流量测量
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高准(Micro Motion):精准的科里奥利质量流量计
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《软件》 2007年第3期14-14,共1页
我需要测量从-200℃到400℃温度条件下的流量。 我需要测量小到1g/h,大到1000t/h的流量。 我需要测量气液两相流体的流量。 我需要校验这台流量计,可是工艺装置近期根本不能停下来。”
关键词 科里奥利质量流量计 气液两相流体 温度条件 工艺装置 测量
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低温微润滑射流喷嘴
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《技术与市场》 2010年第4期111-111,共1页
喷雾冷却就是把微量液体混入压力气流中,形成雾状的气液两相流体,通过喷雾产生射流,喷射到切削区,使工件和刀具得到充分冷却和润滑。这种气液两相流体射入切削区的时候,具有一定的压力和速度,动能很大。因此渗透切削区的能力也很... 喷雾冷却就是把微量液体混入压力气流中,形成雾状的气液两相流体,通过喷雾产生射流,喷射到切削区,使工件和刀具得到充分冷却和润滑。这种气液两相流体射入切削区的时候,具有一定的压力和速度,动能很大。因此渗透切削区的能力也很强。喷雾冷却技术的关键在于能否把冷却液充分雾化。该喷嘴的设计中加入了雾化器,因此就实现了冷却液充分雾化的特点。压缩空气从喷嘴体的中心通孔通过,冷却液经冷却液孔注入,流量可用螺杆调节。 展开更多
关键词 射流喷嘴 润滑 气液两相流体 喷雾冷却 低温 冷却 雾化器 微量
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Local Flow Regime Transition Criteria of Gas-Liquid Two-phase Flow in Vertical Upward Tube with a Horizontal Rod 被引量:4
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作者 胡志华 杨燕华 +1 位作者 刘磊 周芳德 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2006年第4期442-449,共8页
The upward multiphase cross flow and heat transfer in the vertical tube may occur in oil production and chemical facilities. In this study, the local flow patterns of an upward gas-water two phase cross flow in a vert... The upward multiphase cross flow and heat transfer in the vertical tube may occur in oil production and chemical facilities. In this study, the local flow patterns of an upward gas-water two phase cross flow in a vertical tube with a horizontal rod have been investigated with an optical probe and the digital high speed video system. The local flow patterns are defined as the bubble, slug, churn and annular flow patterns. Optical probe signals are ana- lyzed in terms of probability density function, and it is proved that the local flow patterns can be recognized by this method. The transition mechanisms between the different flow patterns have been analyzed and the corresponding transitional models are proposed. Finally, local flow pattern maps of the upward gas-water two-phase flow in the vertical tube with a horizontal rod are constructed. 展开更多
关键词 GAS-LIQUID two-phase cross flow local flow pattern transition
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Computational fluid dynamics simulation of gas-liquid two phases flow in 320 m^3 air-blowing mechanical flotation cell using different turbulence models 被引量:3
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作者 沈政昌 陈建华 +2 位作者 张谌虎 廖幸锦 李玉琼 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第6期2385-2392,共8页
According to the recently developed single-trough floating machine with the world's largest volume(inflatable mechanical agitation flotation machine with volume of 320 m3) in China, the gas-fluid two-phase flow in... According to the recently developed single-trough floating machine with the world's largest volume(inflatable mechanical agitation flotation machine with volume of 320 m3) in China, the gas-fluid two-phase flow in flotation cell was simulated using computational fluid dynamics method. It is shown that hexahedral mesh scheme is more suitable for the complex structure of the flotation cell than tetrahedral mesh scheme, and a mesh quality ranging from 0.7 to 1.0 is obtained. Comparative studies of the standard k-ε, k-ω and realizable k-ε turbulence models were carried out. It is indicated that the standard k-ε turbulence model could give a result relatively close to the practice and the liquid phase flow field is well characterized. In addition, two obvious recirculation zones are formed in the mixing zones, and the pressure on the rotor and stator is well characterized. Furthermore, the simulation results using improved standard k-ε turbulence model show that surface tension coefficient of 0.072, drag model of Grace and coefficient of 4, and lift coefficient of 0.001 can be achieved. The research results suggest that gas-fluid two-phase flow in large flotation cell can be well simulated using computational fluid dynamics method. 展开更多
关键词 computational fluid dynamics (CFD) simulation flotation cell gas-liquid two-phases flow
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Investigation on Liquid Holdup in Vertical Zero Net-Liquid Flow
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作者 刘磊 StuartL.Scott 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2001年第3期284-290,共7页
Zero net-liquid flow (ZNLF) is a special case of upward gas-liquid two-phase flow. It is a phenomenon observed as a gas-liquid mixture flows in a conduit but the net liquid flow rate is zero. Investigation on the liqu... Zero net-liquid flow (ZNLF) is a special case of upward gas-liquid two-phase flow. It is a phenomenon observed as a gas-liquid mixture flows in a conduit but the net liquid flow rate is zero. Investigation on the liquid holdup of ZNLF is conducted in a vertical ten-meter tube with diameter of 76 mm, both for Newtonian and nonNewtonian fluids. The gas phase is air. The Newtonian fluid is water and the non-Newtonian fluids are water-based guar gel solutions. The correlations developed for predicting liquid holdup on the basis of Lockhart-Martinelli parameter are not suitable to ZNLF. A constitutive correlation for the liquid holdup of vertical ZNLF was put forward by using the mass balance. It is found that the liquid holdup in ZNLF is dependent on both the gas flow rate and the flow distribution coefficient. 展开更多
关键词 gas-liquid flow two-phase flow complex flow liquid holdup Newtonian fluid non-Newtonian fluid
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Numerical simulation of spray performance based on the Euler-Lagrange Approach 被引量:4
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作者 Yujia Tao Xiulan Huai +1 位作者 Ziyi Guo Ran Yin 《Journal of Thermal Science》 SCIE EI CAS CSCD 2009年第1期91-96,共6页
Numerical simulations have been carried out to investigate the liquid atomization and spray process using the Discrete Phase Model of the commercial CFD code combined with the Wall-Film boundary conditions. The effect... Numerical simulations have been carried out to investigate the liquid atomization and spray process using the Discrete Phase Model of the commercial CFD code combined with the Wall-Film boundary conditions. The effects of spray parameters on droplets Santer mean diameter (SMD), droplet collision speed, the thickness of liquid-film, the surface temperature and its uniformity were analyzed in the present study. The simulation results and the experimental data obtained in the available literature agree within 13.8%, The computational results show that the spray pressure is the main factor to realize the atomization. Increasing the mass flux and the spray pressure, the droplet collision speed increases while the corresponding maximum film thickness on the heated surface declines. The surface temperature changes indistinctively with the increase of the spray distance, but the temperature distribution tends to be uniform. 展开更多
关键词 liquid atomization discrete phase model Wall-film numerical simulation
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