化工学报
化工學報
화공학보
JOURNAL OF CHEMICAL INDUSY AND ENGINEERING (CHINA)
2015年
1期
366-372
,共7页
胡宝龙%胡贵华%蒋达%钱锋
鬍寶龍%鬍貴華%蔣達%錢鋒
호보룡%호귀화%장체%전봉
碳二加氢%计算流体力学%遗传算法%优化
碳二加氫%計算流體力學%遺傳算法%優化
탄이가경%계산류체역학%유전산법%우화
acetylene hydrogenation%computational fluid dynamics%genetic algorithm%optimization
以碳二加氢等温管式固定床反应器为研究对象,利用计算流体力学(CFD)方法建立了与外界有热量交换的二维均相流反应器模型,通过添加气固能量方程,建立了多孔介质区内部热交换与气固耦合传热的两温度模型。采用遗传算法对反应的动力学参数进行了拟合,并以加氢选择性最优为目标函数,对碳二加氢反应的入口氢炔比与反应器的冷却温度进行优化,得到最优氢炔比为1.18,最优的冷却温度为334.66 K。最后根据模拟与优化结果,分析了氢炔比和冷却温度对加氢反应选择性的影响,对提高加氢反应器的操作性能具有重要的意义。
以碳二加氫等溫管式固定床反應器為研究對象,利用計算流體力學(CFD)方法建立瞭與外界有熱量交換的二維均相流反應器模型,通過添加氣固能量方程,建立瞭多孔介質區內部熱交換與氣固耦閤傳熱的兩溫度模型。採用遺傳算法對反應的動力學參數進行瞭擬閤,併以加氫選擇性最優為目標函數,對碳二加氫反應的入口氫炔比與反應器的冷卻溫度進行優化,得到最優氫炔比為1.18,最優的冷卻溫度為334.66 K。最後根據模擬與優化結果,分析瞭氫炔比和冷卻溫度對加氫反應選擇性的影響,對提高加氫反應器的操作性能具有重要的意義。
이탄이가경등온관식고정상반응기위연구대상,이용계산류체역학(CFD)방법건립료여외계유열량교환적이유균상류반응기모형,통과첨가기고능량방정,건립료다공개질구내부열교환여기고우합전열적량온도모형。채용유전산법대반응적동역학삼수진행료의합,병이가경선택성최우위목표함수,대탄이가경반응적입구경결비여반응기적냉각온도진행우화,득도최우경결비위1.18,최우적냉각온도위334.66 K。최후근거모의여우화결과,분석료경결비화냉각온도대가경반응선택성적영향,대제고가경반응기적조작성능구유중요적의의。
With the study object of an acetylene hydrogenation reactor with isothermal tubular fixed bed, this paper used computational fluid dynamics (CFD) method to establish the two-dimensional homogeneous flow reactor model that had heat exchange with the outside. By adding the solid-gas energy equations, the heat exchange model of porous medium zone and two-temperature model of gas-solid coupled heat transfer are established. The genetic algorithm was used to fit reacting kinetic parameters. And the ratio of hydrogen acetylene ration (H2/C2H2) and the cooling temperature were optimized to meet the maximum of reaction selectivity. Simulation results show that the optimal hydrogen acetylene ratio is 1.18 and the optimal cooling temperature is 334.66 K. Finally, based on the simulation and optimization results, the effects of the hydrogen acetylene ratio and the cooling temperature on the selectivity of acetylene hydrogenation reaction were analysed, and therefore they provide an important significance for improving the operating performance of acetylene hydrogenation reactor.