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带补偿的ZE单级离心泵转速参数化自适应控制方法
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作者 康鑫 《中国科技期刊数据库 工业A》 2024年第8期0038-0041,共4页
为了在提升离心泵整体运行效能的同时,确保离心泵的安全稳定运行,提出带补偿的ZE单级离心泵转速参数化自适应控制方法。通过分析ZE型单级离心泵实时状态监测技术架构,在数据层对各传感器的安装位置进行综合布局,采集离心泵运行数据;以... 为了在提升离心泵整体运行效能的同时,确保离心泵的安全稳定运行,提出带补偿的ZE单级离心泵转速参数化自适应控制方法。通过分析ZE型单级离心泵实时状态监测技术架构,在数据层对各传感器的安装位置进行综合布局,采集离心泵运行数据;以前馈补偿的方式,对比计算ZE单级离心泵的实时进出口压差与目标压差的误差;将误差系数作为模糊PID控制器的输入,输出具有自适应特征的泵压力状态控制信号,实现ZE单级离心泵转速参数化自适应控制与调节。实验结果表明:利用设计方法控制后,离心泵转速由2928r/min提升至2940r/min,同时转速控制滞后性与超调量较小、系统跟随性高,可以在确保离心泵在转速最低情况下达到最佳节能状态,具有较好的实际应用效果。 展开更多
关键词 ZE单级离心泵 转速参数化 自适应控制 前馈补偿
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Kinetics of celestite conversion to acidic strontium oxalate hydrate in aqueous solution of oxalic acid 被引量:1
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作者 Mert ZORAGA Cem KAHRUMAN Ibrahim YUSUFOGLU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第6期1332-1345,共14页
Conversion of SrSO4 to acidic strontium oxalate hydrate(H[Sr(C2O4)1.5(H2O)]) in aqueous H2C2O4 solutions proceeds as a consecutive reaction. In the first step of the consecutive reaction, SrSO4 reacts with H2C2O4 and ... Conversion of SrSO4 to acidic strontium oxalate hydrate(H[Sr(C2O4)1.5(H2O)]) in aqueous H2C2O4 solutions proceeds as a consecutive reaction. In the first step of the consecutive reaction, SrSO4 reacts with H2C2O4 and pseudomorphic conversion to SrC2 O4·H2O occurs. In the second step, SrC2 O4·H2O reacts with H2C2O4 to form H[Sr(C2 O4)1.5(H2O)]. Sr(HC2 O4)(C2 O4)0.5·H2 O crystallizes during cooling of the reaction mixture to room temperature if the solution reaches the saturation concentration of (H[Sr(C2O4)1.5(H2O)]. The aims of this study are the derivation of reaction rate equations and the determination of the kinetic parameters such as pre-exponential factor, apparent activation energy and order of H2C2O4 concentration for each reaction step.Fractional conversions of SrSO4 were calculated using the quantitative amounts of dissolved S and Sr. It was determined that the reaction rate increased at the initial time of reaction by increasing the temperature using solutions with approximately same H2C2O4 concentrations. The reaction extends very slowly after a certain time in solutions with low H2C2O4 concentration and ends by the formation of a protective layer of SrC2O4-H2O around the surfaces of solid particles. Fractional conversion of SrSO4 is increased by increasing concentration of H2C2O4 at constant temperature. Kinetic model equations were derived using shrinking core model for each step. 展开更多
关键词 celestite concentrate pseudomorphic conversion rate equations kinetic parameters conversion reaction
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