【文章內(nèi)容簡(jiǎn)介】
ing and simulation. A modelling framework, prising state of the art membrane transport models, membrane module flow dynamics, and material balance equations over entire units, was embedded in custom unit operations (UOs) for batch concentration (BC), constant volume semibatch (CVS), and steadystate (SS) filtration. The numerical solutions of the resulting systems of equations were programmed in MATLAB and implemented in several process simulation environments such as Aspen Plus, HYSYS and COFE. The puter aided process engineering open (CAPE OPEN) standards for munication between chemical engineering software ponents were used to ensure interoperability amongst MATLAB UOs, process simulation environments and different thermophysical properties servers. Three example simulations using OSN Designer were carried out in the environment of Aspen Plus with dual aims. Firstly, OSN Designer was validated through parison to available experimental data. Secondly, the example simulations addressed important topics such as energy efficiency of OSN pared to evaporation, use of pore flow or solution diffusion membrane transport models, and effect of thermodynamic nonideality on the overall process performance.檢索題目:基于matlab的計(jì)算機(jī)仿真技術(shù)研究檢索工具:萬(wàn)方外文數(shù)據(jù)庫(kù)檢索途徑:title (題目)檢索詞:MATLAB→MATLAB計(jì)算機(jī)→puter仿真技術(shù)→technique of simulation檢索式:Research of puter simulation technology AND MATLAB檢索結(jié)果:16條 其中【題名】Computer Simulation Technology Application in Hydraulic System Analysis and Design【作者】Hu XiaopingYou Zhangping【機(jī)構(gòu)】2nd International conference on puter and information applications: ICCIA 2012, Taiyuan, China, 89 December 2012, volume 1 of 2【刊名】《Advanced Materials Research》, 2014, 756759:4444