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Coolbrook公司成功实现电气化裂解100%来自废塑料的热解油
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作者 黄丽敏(摘译) 《石油炼制与化工》 北大核心 2026年第1期21-21,共1页
Coolbrook公司采用RotoDynamic Reactor ^(TM)(RDR,旋转动力反应器)技术成功裂解了100%来自废塑料的热解油(py-oil),同时仍能够实现高产乙烯和丙烯并保持稳定运行。这一突破建立在Coolbrook公司早期在荷兰Brightlands试点工厂的基础之上... Coolbrook公司采用RotoDynamic Reactor ^(TM)(RDR,旋转动力反应器)技术成功裂解了100%来自废塑料的热解油(py-oil),同时仍能够实现高产乙烯和丙烯并保持稳定运行。这一突破建立在Coolbrook公司早期在荷兰Brightlands试点工厂的基础之上,具备使用可再生电力将气体(包括空气、蒸汽、氮气和甲烷)加热到1000℃以上的能力。Coolbrook公司还在中试工厂成功裂解了石脑油,与传统裂解炉相比,产量显著提高。凭借这一结果,Coolbrook公司证明了其基于电气化涡轮机械的工艺可以扩展到循环原料的裂解。 展开更多
关键词 rotodynamic Reactor 废塑料 Coolbrook公司 热解油
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Geometric optimization of a blood pump impeller using the Taguchi method:CFD analysis and experimental evaluation
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作者 Abdoulaye Billo Diallo Rafet Yapici +1 位作者 Omer Incebay Hasan Cinar 《Medicine in Novel Technology and Devices》 2025年第2期132-141,共10页
Rotodynamic Left Ventricular Assist Devices(LVADs)are critical in managing severe heart failure by providing mechanical circulatory support.Improving these blood pumps'efficiency is crucial for both lowering the d... Rotodynamic Left Ventricular Assist Devices(LVADs)are critical in managing severe heart failure by providing mechanical circulatory support.Improving these blood pumps'efficiency is crucial for both lowering the device's energy consumption and enhancing patient comfort.In this study,the efficiency of a reference centrifugal blood pump was improved through geometric optimization and validated using computational fluid dynamics(CFD)simulations and experiments.The number of blades,inlet width,outlet width,inlet angle,and outlet angle are among the important impeller parameters that were optimized at three different levels.The orthogonal array of the Taguchi design method was used to reduce the 243 possible configurations from the full-factorial experimental design to 27 trial tests.Analysis of Variance(ANOVA)was used to determine the optimal geometric parameters,which led to maximum efficiency after S/N ratios were analyzed using MINITAB-18 software.The performance of the optimized pump was evaluated via CFD at 3300,3150,and 3450 pump rotation speeds,resulting in a 21% increase in hydraulic efficiency at the design point(5 L/min,3300 rpm,and 128.515 mm-Hg).Furthermore,experimental results demonstrated reduced power consumption for the optimized pump compared to the reference pump.This study highlights the potential of geometric optimization in advancing the performance of rotodynamic LVADs. 展开更多
关键词 CFD OPTIMIZATION Taguchi method Blood pump rotodynamic LVAD ANOVA
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