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1)  condense phase zone
浓相区
1.
The regularity of longitudinal distribution of entrainment rate which varied with observed Velocity, freeboard height, internals type, size and location, was studied respectively in the case of setting internals in dilute phase zone and condense phase zone.
研究了当内部构件分别设在稀相区和浓相区时,夹带速率的轴向分布随表观气速、自由空域内的高度及内部构件的类型、尺寸、放置位置的变化规律。
2)  dilute phase materials concentration
稀相区物料浓度
3)  dense-phase
浓相
1.
Flow characteristics and Shannon entropy analysis of dense-phase pneumatic conveying under high pressure;
高压浓相粉煤气力输送特性及信息熵分析(英文)
2.
Application of electrical capacitance tomography in dense-phase pneumatic conveying of pulverized coal under high pressure;
电容层析成像在高压浓相煤粉气力输送中的应用
3.
Resistance characteristics of dense-phase pneumatic conveying pulverized coal with various particle size under high pressure
高压浓相变粒径煤粉气力输送阻力特性
4)  dense phase
浓相
1.
Development of an automatic control system of lumina dense phase and hyper dense phase storage and covey;
氧化铝浓相、超浓相贮运自动控制系统的研制
2.
Research on flow characteristics of positive dense phase pneumatic conveyance and system selection;
浓相正压气力输送流动特性研究和系统选择
3.
Conposition,characteristics and operation of a dense phase pneumatic conveying system with positive pressure for coal ash in Thermal Power Plant of Anqing Petrochemical Work are described.
详细介绍了安庆石化热电厂正压浓相气力输灰系统的组成、特点及运行情况。
5)  concentrated phase
浓相
1.
At the same time, the volume fraction of concentrated phase increased from 25% to over 40%.
结果表明,大庆原油与碱反应1d时,测得其浓相体积分数为25%,所形成的乳状液为O/W型乳状液,而随着原油与碱作用时间的增加,其浓相体积分数达到40%以上,形成W/O型乳状液,且乳状液稳定性随作用时间增加而增强。
2.
In pneumatic ash handling system,the granule can be concentrated phase conveyed in the shape of plunger at low flow velocity,and the attrition of conveying pipe in this system is least.
根据 Geldart 的颗粒分类方法,对于 A、B 类颗粒物料易流化,采用气力方式可实现浓相低流速柱塞状输送,使输送管道的磨损最小。
3.
A new de-ashing method, known as the fly-ash air-transport technology with concentrated phase positive pressure, is introduced in this paper.
燃煤锅炉的除灰方式及除灰系统对电厂的安全、经济运行及环境保护有着重大的影响,介绍一种新型的干式除灰技术──飞灰正压浓相气力输送。
6)  concentration-constant zone
恒浓区
1.
Changing the heat state of the feed, the concentration-constant zone was eliminated, and the optimized distillation strategy (20% vaporized feed, reflux ratio 2 and the number of the theory tray 63) was selecte.
采用计算机模拟进料热状况对醋酸乙烯精馏系统的影响以及不同回流比下塔板数、能耗、冷却负荷等,通过改变进料热状况消除塔内恒浓区,优选出最佳精馏方案即进料汽化率20%、回流比R=2、理论板数为63;并应用复合斜孔塔板代替筛板塔板,改造后生产能力提高一倍,节能20%,产品质量稳定,醋酸乙烯精馏塔运行周期从1年延长至3~4年。
2.
After the feed heat state was changed, the concentration-constant zone in the distillation tower was eliminated, and the optimized distillation strategy was selected:20% of feed gasification rate,2 of reflux ratio and 63 of theoretical tray number.
应用计算机模拟了进料热状况对醋酸乙烯精馏系统的影响,并计算了不同回流比下的塔板数、能耗、冷却负荷等参数值,通过改变进料热状况消除塔内恒浓区,优选出最佳精馏方案,即进料气化率20%、同流比为2、理论板数为63。
补充资料:和武相锦楼玩月得浓字
【诗文】:
此夜年年月,偏宜此地逢。近看江水浅,遥辨雪山重。
万井金花肃,千林玉露浓。不唯楼上思,飞盖亦陪从。



【注释】:



【出处】:
全唐诗:卷318-14
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