内部热耦合精馏塔,ITCDIC
1)ITCDIC内部热耦合精馏塔
1.The nonlinear wave model of internal thermally coupled distillation column (ITCDIC) was firstly established.首先建立内部热耦合精馏塔(ITCDIC)的非线性波动降阶模型,并将非线性波动理论(wave)应用到ITCDIC控制问题中,实现一般模型控制(GMC)方案。
英文短句/例句

1.Research on Advanced Control Strategies of High-purity Internal Thermally Coupled Distillation Columns;高纯内部热耦合精馏塔的先进控制策略研究
2.Nonlinear Wave Traveling in High-purity Internal Thermally Coupled Distillation Column高纯内部热耦合精馏塔的非线性Wave传播特性
3.Synthesizing and Analyzing the Dual-Point Temperature Control System of an Ideal Heat-Integrated Distillation Column理想内部热耦合精馏塔双温度控制系统的综合与分析
4.Deepening Internal Mass Integration--Synthesis and Design of Reactive Distillation Columns with Negligible or No Thermal Effect强化内部物质耦合——无热效应反应精馏塔的综合与设计
5.Intensifying Internal Heat Integration-Synthesis, Design and Control of a High-Purity Ethylene Glycol Reactive Distillation Column强化内部热耦合—高纯度乙二醇反应蒸馏塔的综合、设计与控制
6.The design and simulation of fully thermally coupled distillation column for ternary mixture separation (I)--A shortcut design method三组元全热耦合精馏塔设计与模拟 (Ⅰ)--简捷设计法
7.The design and simulation of fully thermally coupled distillation column for ternary mixture separation (II)--Rigorous simulation and optimization三组元全热耦合精馏塔设计与模拟 (Ⅱ)--严格模拟与优化
8.Adaptability and Thermodynamic Efficiency of Thermally Coupled Distillation;热耦合精馏的适应性及其热力学效率
9.Simulation of Fully Thermally Coupled Distillation Columns for Multi-component Mixture Separation;多组元全热耦合精馏分离的模拟研究
10.Fuzzy Decoupling Control of the Distillation Column Based on PLC基于PLC的精馏塔模糊解耦控制器
11.Conceptual Design, Dynamics and Control Study of High-Purity Internal Thermally Coupled Air Separation Columns;高纯内部热耦合空气分离塔的概念设计、动态特性分析及控制研究
12.Simulation of reactive distillation dividing wall column for synthesis of methyl acetate反应精馏隔壁塔内合成乙酸甲酯的模拟
13.Simulation of Diabatic Distillation with Heat Integration between Column Sections塔段透热能量集成精馏塔模拟及研究
14.Design of Fuzzy-neuron PID Decoupling Controller for Distillation Column Temperature基于模糊神经元PID解耦的精馏塔温度控制
15.Simulation study of internally heat-integrated distillation column and its characteristics for energy saving内部能量集成精馏塔的模拟研究及其节能特性分析
16.Application of VB6.0 in Temperature Distribution of Rectifying Tower;VB6.0在确定精馏塔内温度分布中的应用
17.Model Simulation Investigation on Coupled Heat Transfer of the Components in Engine Combustion Chamber;内燃机燃烧室部件耦合传热仿真研究
18.Study of Distillation Column s Mechanism-NN Hybrid Model;精馏塔机理—神经网络混合建模的研究
相关短句/例句

ITCASC内部热耦合空分精馏塔
1.A numeric model of internal thermal coupling air separation column(ITCASC) is established.建立了内部热耦合空分精馏塔(ITCASC)的数学模型,采用高斯-牛顿法迭代求解,选用液相组成作为迭代变量,氧、氮、氩三元物系的物性计算采用PR状态方程。
3)High-purity ITCDIC高纯内部热耦合精馏塔
4)Internal thermally coupled distillation column内部热耦合精馏
1.Internal thermally coupled distillation column (ITCDIC) has long been regarded as a promising energy-efficient distillation column that has the potenti.内部热耦合精馏塔(ITCDIC)是精馏节能研究的前沿,具有极大的工业应用前景,但是至今并没有被广泛应用。
5)ITCDIC热耦合精馏塔
1.Internal Thermally Coupled Distillation Column(ITCDIC) is the research frontier of distillation energy saving .内部热耦合精馏塔 (ITCDIC)的热耦合机理仍是SRV方法 ,但去掉了再沸器和冷凝器 ,具有较大的节能潜力 。
2.The results show that ITCDIC is a self-regulating process, and could be operated smoothly with two PID controllers; the steady state design could be disassociate with the dynamic design.这些研究方法可以借鉴到内部热耦合精馏塔 (ITCDIC)的控制研究上[5 ]。
6)Fully thermally coupled distillation column全热耦合精馏塔
延伸阅读

热耦合精馏塔控制分子式:CAS号:性质:多个精馏塔串联操作时,上一塔蒸汽可以做为下一塔热源,以便热量回收利用。首先要求上一塔的塔顶温度高于下一塔提供大部分能量,同时可自行压入下一塔再沸器,这种流程称为精馏塔的热耦合系统。热耦合精馏塔控制即为控制各塔操作状态以稳定热耦合操作。