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1)  evaporation degree
蒸发深度
2)  limit depth of phreatic evaporation
潜水蒸发极限深度
3)  phreatic evaporation limit depth
潜水停止蒸发深度
4)  deep-water evaporite
深水蒸发岩
5)  evaporation rate
蒸发速度
6)  evaporating temperature
蒸发温度
1.
A refrigerating system for freezing fish products using two evaporating temperatures is discussed in detail by means of theoretical analysis, calculation and consideration of operating effects.
通过理论分析、计算和实际应用测定,全面阐述了用两种蒸发温度对鱼品进行速冻的制冷系统。
2.
With a designed supercooled-water ice making system test-bed, carries out grouping experiments for different evaporating temperatures and water flow rates.
在自主开发的过冷水制冰试验台上,对不同蒸发温度和水流量下的运行情况进行了分组试验。
3.
Some researches in an ice harvester machine are made which indicate that the evaporating temperature is the most significant factor which influence the COP (Coefficient of Performance) of a refrigeration compressor while both the evaporating temperature and the condensing temperature are two main factors.
通过对某冰片滑落式冰蓄冷空调系统运行的分析及研究,表明在影响制冷机COP值的两大因素——蒸发温度和冷凝温度中,蒸发温度占主导地位,要提高制冷机运行的COP值应当首先考虑提高制冷机的蒸发温度。
补充资料:BCS穿透深度(BCSpenetrationdepth)
BCS穿透深度(BCSpenetrationdepth)

对纯超导体,由BCS电流方程,在伦敦极限下(`\xi_0\lt\lt\lambda`或$l\lt\lt\xi_0$)的穿透深度与伦敦穿透深度λL(T)相符。对非纯超导体(含杂质),在伦敦极限下为

$\lambda(T)=\lambda_L(T)(1 \xi_0//l)^{1/2}$

一般地,λL(T)由经验公式表示其与温度T的关系(见“伦敦穿透深度”)。在皮帕德极限下($\xi_0\gt\gt\lambda$或$\xi_0\lt\ltl$),ξp=ξ0,则给出为

$\lambda(T)=\frac{8}{9}\lambda_L(T)[\frac{sqrt3\xi_0}{2\pi\lambda_L(T)}]^{1/3}$

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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