2) capillary pumped loop
CPL
1.
Numerical study of the pressure and temperature changing ofthe porous wick in capillary pumped loop evaporator;
CPL蒸发器多孔芯温压变化的数值模拟
2.
The numerical model for the small-scale fiat capillary pumped loop(CPL)evaporator is presented,which includes liquid and vapor flow,heat transfer and phase change in the porous wick structure and heat transfer in the fluid region and metallic wall,and the entire evaporator is solved with SIMPLE algorithm as a conjugate problem.
本文建立了小型平板CPL蒸发器毛细多孔芯内汽液两相流动与传热的模型以及金属外壁和工质区的导热模型,并进行耦合求解。
3.
The influence of temperature difference between upper surface and bottom surface of wick structure on startup process of the small-scale flat capillary pumped loop evaporator is analyzed,and the unsteady heat transfer model of evaporator in the fully-flooded startup stage is presented.
分析了小型平板CPL蒸发器毛细多孔芯上下表面温差对启动的影响,建立了蒸发器满液启动的数学模型。
3) pasting plate
平板式极板
4) planar
[英]['pleinə] [美]['plenɚ]
平板式
1.
The sealant materials for planar intermediate temperature solid oxide fuel cells (ITSOFC) are required for the sealing of the different components to prevent from leakage.
平板式中温固体氧化物燃料电池(ITSOFC)的密封材料在工作温度下,与其接触的电池材料应具备以下特性:(1)气密性;(2)尺寸稳定性;(3)热匹配性;(4)化学稳定性;(5)绝缘性。
2.
The operating temperature of planar SOFC at 650-800 ℃ is an important objective.
等离子喷涂工艺由于能够高效率的获得理想层状结构和优良结合强度的涂层 ,在中温平板式SOFC的阳极、电解质和阴极制备中均有应用。
3.
The sealant materials for planar intermediate temperature solid oxide fuel cells (ITSOFC) are required for thesealing of the different components to prevent from leakage.
平板式中温固体氧化物燃料电池(intermediate temperature solid oxide fuel cells,ITSOFC)在600~850℃温度下运行,电解质两侧的燃料气体(H_2)和氧化气体(O_2)必须加以分离,这要求金属双极板和陶瓷电解质高温气密封接。
5) flat plate
平板式
1.
Experimental study on new flat plate solar water heater;
蜂窝热管平板式太阳能热水器的实验研究
6) plate-type plan layout
板式平面
补充资料:JP型平板式橡胶减震器
分子式:
CAS号:
性质:橡胶减震器的一种,系外形为平板状的橡胶金属制品。其结构为内外金属板(环),中间夹橡胶,以模压法生产。可分JP-I、IP-Ⅱ及JP-III三种型号。用于无线电、仪器和仪表设备,以保护其整机免受震动和冲击的影响。
CAS号:
性质:橡胶减震器的一种,系外形为平板状的橡胶金属制品。其结构为内外金属板(环),中间夹橡胶,以模压法生产。可分JP-I、IP-Ⅱ及JP-III三种型号。用于无线电、仪器和仪表设备,以保护其整机免受震动和冲击的影响。
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