1) parallel-feed multi-effect evaporation
平流多效蒸发
1.
Mathematical model and process simulation of parallel-feed multi-effect evaporation system
平流多效蒸发系统的数学模型与求解
2) countercurrent multi-effect evaporation
逆流多效蒸发
1.
The energy saving technology of countercurrent multi-effect evaporation for light alkali concentration;
逆流多效蒸发淡碱浓缩工艺节能技术研究
2.
New design method of countercurrent multi-effect evaporation system with solid separation;
有固相析出的逆流多效蒸发系统的新设计方法
3.
The model of complex countercurrent multi-effect evaporation with condensed water flash and extra vapor withdrawal is established.
建立了有冷凝水闪蒸和额外蒸汽引出的复杂逆流多效蒸发系统的数学模型 ,常规逆流多效蒸发模型只是该模型的一个特例。
3) cocurrent multi effect evaporation
并流多效蒸发
1.
A mathematical model of cocurrent multi effect evaporation with solid separation was established.
建立了带有固相析出的并流多效蒸发系统的数学模型。
2.
The mathematical model of optimum design of cocurrent multi effect evaporation system with solid separation was established.
建立了带有固相析出的并流多效蒸发系统优化设计数学模型。
4) multi-effect evaporation
多效蒸发
1.
The computer-aided calculation of cocurrent multi-effect evaporation;
并流多效蒸发系统的计算机辅助计算
2.
Process Simulation and Operation Optimization of Complex Multi-effect Evaporation;
复杂多效蒸发过程模拟与操作优化研究
3.
The Energy Saving Study of Multi-effect Evaporation Based on Genetic Algorithm;
基于遗传算法的复杂多效蒸发系统节能技术研究
5) multiple effect evaporation
多效蒸发
1.
In this paper,heat balance calculating methods are put forward for crossflow(mixed)feed multiple effect evaporation processes with solid separation.
本文提出了有固相析出的错流进料多效蒸发过程的热量衡算方法,并给出了利用本文热量衡算方法结合相图计算进行有固相析出的多效错流蒸发过程的物料衡算和热量衡算的逐步逼近计算步骤。
6) multi effect evaporation
多效蒸发
1.
With the total expense as a target and two pressures as decisive variables, the optimal object function of the multi effect evaporation process was derived.
以蒸发总费用为目标,以两个压力为决策变量建立了多效蒸发过程的优化目标函数,用BFGS法求得了其最优解。
2.
The optimum design software of multi effect evaporation system was programmed using Visual Basic 5 0.
利用VisualBasic 5 0语言开发多效蒸发系统优化设计应用软件。
补充资料:单效蒸发
分子式:
分子量:
CAS号:
性质:蒸发操作的一种。特点是所产生的二次蒸汽不用来使物料进一步蒸发。
分子量:
CAS号:
性质:蒸发操作的一种。特点是所产生的二次蒸汽不用来使物料进一步蒸发。
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