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O_(3)催化氧化深度处理焦化废水生化尾水影响因素 被引量:5
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作者 陈雷 周晟葆 +2 位作者 徐炎华 孙文全 孙永军 《煤炭学报》 EI CAS CSCD 北大核心 2020年第S02期1032-1040,共9页
为研究O3催化氧化技术深度处理焦化废水生化尾水的影响因素,利用自主设计的O3固定床反应器试验装置,通过单因素试验探究了废水COD质量浓度、反应pH、H2O2质量分数、催化剂填充比(催化剂质量与废水质量之比)以及反应温度对O3催化氧化焦... 为研究O3催化氧化技术深度处理焦化废水生化尾水的影响因素,利用自主设计的O3固定床反应器试验装置,通过单因素试验探究了废水COD质量浓度、反应pH、H2O2质量分数、催化剂填充比(催化剂质量与废水质量之比)以及反应温度对O3催化氧化焦化废水生化尾水的影响。此外,借助数学优化和分析模型预测、对比和分析各个因素对COD和苯酚去除率的交互影响和相关性。以单因素试验为基础,结合响应面优化的Box-Behnken Design模型,深入分析了pH、催化剂填充比、H2O2质量分数对O3催化氧化焦化废水生化尾水的影响强度,通过二次回归模型证明该模型的高度拟合性。单因素试验结果表明,废水COD的最佳去除率为57.72%,此时的反应条件为:COD质量浓度为120 mg/L,反应pH为6.0,O3质量浓度为100 mg/L,O3质量流量为1.56 mg/min,催化剂填充比为5∶1,H2O2质量分数为0.08%。响应面优化模型结果表明pH和催化剂填充比的交互影响最强,对最终的去除率贡献值较大;二次多项式模拟的相关系数较高,为R2=0.9646,表明该模型拟合度较高。采用GC-MS进一步分析了O3固定床深度处理焦化废水生化尾水过程中有机成分的变化,结果证实,经过O3催化氧化处理后,废水中的大分子有机物已转变为分子量较小的物质,部分试验中检测不到苯酚的存在,O3催化氧化对焦化废水生化尾水中的COD和苯酚有较显著的去除效果。 展开更多
关键词 O_(3)催化氧化 焦化废水尾水 响应面优化模型 固定床深度处理
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Multi-objective optimization of stamping forming process of head using Pareto-based genetic algorithm 被引量:10
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作者 周杰 卓芳 +1 位作者 黄磊 罗艳 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3287-3295,共9页
To obtain the optimal process parameters of stamping forming, finite element analysis and optimization technique were integrated via transforming multi-objective issue into a single-objective issue. A Pareto-based gen... To obtain the optimal process parameters of stamping forming, finite element analysis and optimization technique were integrated via transforming multi-objective issue into a single-objective issue. A Pareto-based genetic algorithm was applied to optimizing the head stamping forming process. In the proposed optimal model, fracture, wrinkle and thickness varying are a function of several factors, such as fillet radius, draw-bead position, blank size and blank-holding force. Hence, it is necessary to investigate the relationship between the objective functions and the variables in order to make objective functions varying minimized simultaneously. Firstly, the central composite experimental(CCD) with four factors and five levels was applied, and the experimental data based on the central composite experimental were acquired. Then, the response surface model(RSM) was set up and the results of the analysis of variance(ANOVA) show that it is reliable to predict the fracture, wrinkle and thickness varying functions by the response surface model. Finally, a Pareto-based genetic algorithm was used to find out a set of Pareto front, which makes fracture, wrinkle and thickness varying minimized integrally. A head stamping case indicates that the present method has higher precision and practicability compared with the "trial and error" procedure. 展开更多
关键词 stamping forming HEADS finite element analysis central composite experimental design response surface methodology multi-objective genetic algorithm
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Prediction and optimization of process parameter of friction stir welded AA5083-H111 aluminum alloy using response surface methodology 被引量:26
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作者 R.Palanivel P.Koshy Mathews 《Journal of Central South University》 SCIE EI CAS 2012年第1期1-8,共8页
A systematic approach was presented to develop the empirical model for predicting the ultimate tensile strength of AA5083-H111 aluminum alloy which is widely used in ship building industry by incorporating friction st... A systematic approach was presented to develop the empirical model for predicting the ultimate tensile strength of AA5083-H111 aluminum alloy which is widely used in ship building industry by incorporating friction stir welding(FSW) process parameters such as tool rotational speed,welding speed,and axial force.FSW was carried out considering three-factor five-level central composite rotatable design with full replications technique.Response surface methodology(RSM) was applied to developing linear regression model for establishing the relationship between the FSW process parameters and ultimate tensile strength.Analysis of variance(ANOVA) technique was used to check the adequacy of the developed model.The FSW process parameters were also optimized using response surface methodology(RSM) to maximize the ultimate tensile strength.The joint welded at a tool rotational speed of 1 000 r/min,a welding speed of 69 mm/min and an axial force of 1.33 t exhibits higher tensile strength compared with other joints. 展开更多
关键词 friction stir welding design expert design of experiments analysis of variance (ANOVA) response surfacemethodology (RSM) optimization
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Design optimization of transonic compressor stage using CFD and response surface model
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作者 王祥锋 王松涛 韩万金 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2010年第1期112-118,共7页
In order to shorten the design period, the paper describes a new optimization strategy for computationally expensive design optimization of turbomachinery, combined with design of experiment (DOE), response surface mo... In order to shorten the design period, the paper describes a new optimization strategy for computationally expensive design optimization of turbomachinery, combined with design of experiment (DOE), response surface models (RSM), genetic algorithm (GA) and a 3-D Navier-Stokes solver(Numeca Fine). Data points for response evaluations were selected by improved distributed hypercube sampling (IHS) and the 3-D Navier-Stokes analysis was carried out at these sample points. The quadratic response surface model was used to approximate the relationships between the design variables and flow parameters. To maximize the adiabatic efficiency, the genetic algorithm was applied to the response surface model to perform global optimization to achieve the optimum design of NASA Stage 35. An optimum leading edge line was found, which produced a new 3-D rotor blade combined with sweep and lean, and a new stator one with skew. It is concluded that the proposed strategy can provide a reliable method for design optimization of turbomachinery blades at reasonable computing cost. 展开更多
关键词 response surface models genetic algorithm transonic compressor optimization design numerical simulation
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