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6篇 您的检索式:作者名="ATENAS M"
    题名 作者 年代 出处 被引量
1Composition and structure of iron oxidation surface layers produced in weak acidic solutions 显示文摘Atenas G M Mielczarski E Mielczarski J A 2005Journal of Colloid and Interface Science2005,289,1:1
2Remarkableinfluence of surface composition and structure of oxidized ironlayer on orange I decomposition mechanisms 显示文摘Atenas G M Mielczarski E Mielczarski J A 2005Journal ofColloid and Interface Science2005,289,1:1
3Remarkable Influence of Surface Composition and Structure of Oxidized IronLayer on Orange Ⅰ Decomposition Mechanisms 显示文摘Atenas G M Mielczarski E Mielezarski J A 2005Journal of Colloid and Interface Science2005,289,1:1
4A QoE management sys- tem to improve IPTV network 显示文摘LLORET J GARCIA M ATENAS M 2011International doumal Communi- cations Systems2011,24,1:1
5Role of iron surface oxidation layers in decomposition of azo-dye water pollutants in weak acidic solutions 显示文摘MIELCZARSKI J A ATENAS G M MIELCZARSKI E 2005Applied Catalysis B : Environmentai2005,56,4:1
6Numerical Prediction and Experimental Investigation of Cavitation Erosion of Hydraulic Components Using HFC显示文摘Hydraulic devices play an essential role in mechanical engineering due to their high-power density,good controllability,flexible application and high robustness,which expose innovative methods of energy transmission.However,in applications where there is an increased risk of fire or explosion,the commonly used combustible mineral oils represent an unacceptable safety hazard.In such cases,fire-resistant,water-based hydraulic fluids are in demand.A special feature of these liquids is their high cavitation tendency and the associated strong erosion wear.The aim of this research is to predict the cavitation behaviour of HFC and the subsequent erosion phenomena using numerical methods and to validate the results with experiments.Additionally,experimental results for HFC were compared with flammable mineral oils(e.g.HLP).The findings help to implement further developments to decrease the erosive effect of cavitation in high-pressure differences in hydraulic components.For this purpose,flow geometries of typical hydraulic components,e.g.valve and pump,are used for experimental and numerical investigation.The large-eddy simulation(LES)turbulent modelling is used with Zwart-Gerber cavitation model.The cavitation aggressiveness is quantified by cavitation erosion indices according to Nohmi.Atena Moosavi Sven Osterland Dominik Krahl Lutz Müller Jürgen Weber 2020Journal of Mechanics Engineering and Automation2020,10,5:0
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