1) microchannel
微槽
1.
Single-phase forced convective heat transfer in swirl microchannels
涡旋微槽内的单相强迫对流换热性能实验
2.
This paper reports the flow characateristics for boiling liquid of pure working substancein different V-shaped microchannels (listed in table 1).
本文报道纯工质在V形微槽内流动沸腾的流动阻力特性,给出了实验结果,并与有关报道的结果进行了比较,分析了流速和微槽结构参数对流动阻力特性的影响。
3.
Experiments were conducted to investigate flow boiling of subcooled water -methanol mixtures flowing through rectangular microchannels.
彭和王等人l‘-‘]报道了对微通道和微槽结构内单组元液体流动沸腾的研究,发现起始沸腾点所需壁面过热度比常规尺度槽道内的低得多,没有明显的部分核沸腾现象,同时发现微槽尺寸对流动沸腾的形成有明显影响。
2) microchannels
微槽
1.
Numerical simulation of ethanol solution heat transfer in rectangular microchannels;
矩形微槽乙醇水溶液传热特性数值模拟
2.
The experimental results indicated that the geometrical configuration of the microchannel plate and the individual microchannels had a significant effect on the single phase convective heat transfer and flow characteristics.
367mm微矩形槽的微槽结构进行了换热和流动特性实验研究。
3) micro groove
微沟槽
1.
Inner axial micro grooves of copper heat pipe were manufactured via the high-speed oil-filled spinning with drawing process,and the corresponding mechanism was then investigated.
对直齿微沟槽铜热管的高速充液旋压拉拔成形加工机理进行了研究,建立了微沟槽高速充液旋压成形的几何模型,通过实验发现:微沟槽的加工包括挤压和成形两个阶段;影响微沟槽成形的主要因素包括多齿芯头几何参数、芯头位置、减薄量、拉拔速度、旋压器转速和工作温度等;通过控制挤压深度、进给量、芯头形状与位置等,可加工出不同形状、不同深宽比及不同壁厚的微沟槽;高速充液旋压加工微沟槽在生产上具有可行性,其材料利用率和生产效率高,成本低廉。
4) microchannel
微槽道
1.
Finite length microchannel flow in transitional regime(—Analytical prediction compared with experiment);
有限长度的过渡领域微槽道流动(—分析预测和试验的比较)(英文)
2.
PIV measurement and simulation in a curved microchannel;
弯曲微槽道内流场的PIV测量和数值模拟
3.
Heat transfer mechanism of saturated boiling flow in the veridical rectangular microchannels;
竖直矩形微槽道内的饱和沸腾换热研究
5) groove size
微槽尺寸
6) Micro channel
微槽道
1.
The flows in finite long flat plate and micro channel were simulated by the information preservation method.
本文运用信息保存法对低速二维的流动现象进行模拟,考察了低速条件下的有限平板绕流以及微槽道气体流动问题。
补充资料:微孔膜电解槽
分子式:
CAS号:
性质:改进的电解食盐溶液隔膜电解槽。用聚合物制成微孔膜代替石棉,具有平滑而均匀的表面,可使两极间距缩小,从而有效地降低槽电压。目前尚处于工业试验阶段。
CAS号:
性质:改进的电解食盐溶液隔膜电解槽。用聚合物制成微孔膜代替石棉,具有平滑而均匀的表面,可使两极间距缩小,从而有效地降低槽电压。目前尚处于工业试验阶段。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条