Shear Evaluation by Quantitative Flow Visualization Near the Casing Surface of a Centrifugal Blood Pump(Reviewed Papers Accepted for Publication in this Special Issue)(Special Issue on Bioengineering)
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概要
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To clarify the correlation between high-shear flow and hemolysis in blood pumps, detail shear velocity distribution was quantified by an experimental method with a model centrifugal blood pump that has a series data of hemolysis tests and computational fluid dynamic analyses. Particular attention was paid to the shear velocity near the casing surface in the volute where the high shear causes in circumferentially wide region that is considerable to cause high hemolysis. Three pump models were compared concern with the radial gap width between the impeller and casing (the radial volute width) also with the outlet position whereas the impeller geometry was identical. These casing geometries were as follows : model 1-the gap width is standard 3 mm and the outlet locates to make a smooth geometrical connection with the volute, model 2-the gap width is small 0.5 mm and the outlet locates to make the smooth geometrical connection with the volute, and model 3-the gap width is small 0.5 mm and the outlet locates to hardly make the smooth geometrical connection with the volute but be similar radial position with that of model 1. Velocity was quantified with a particle tracking velocimetry that is one of the quantitative flow visualization techniques, and the shear velocity was calculated. Results showed that all large shear velocity existed within the layers of about 0.1 mm from the casing surface and that those layers were hardly affected by a vane passage even if the gap width is 0.5 mm. They also showed that the maximum shear velocity appeared on the casing surface, and the shear velocities of models 2 and 3 were almost twice as large as that of model 1. This finding is in full corresponding with the results of hemolysis tests which showed that the hemolysis levels of both models 2 and 3 were 1.5 times higher than that of model 1. These results suggest that detailed high-shear evaluation near the casing surface in the volute is one of the most important keys in estimating the hemolysis of a centrifugal blood pump.
- 社団法人日本機械学会の論文
- 2002-12-15
著者
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小西 康夫
兵庫県立大学 大学院機械系工学専攻
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TAENAKA YOSHIYUKI
National Cardiovascular Center; Department of Artificial Organs
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Taenaka Yoshiyuki
Department Of Artificial Organs Research Institute National Cardiovascular Center
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Ito Kazuyuki
Nikkiso Co. Ltd.
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TSUKIYA Tomonori
National Cardiovascular Center
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NISHIDA Masahiro
Institute for Human Science and Biomedical Engineering, National Institute of Advanced Industrial Sc
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YAMANE Takashi
Institute for Human Science and Biomedical Engineering, National Institute of Advanced Industrial Sc
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TSUKAMOTO Yuki
Nikkiso, Co., Ltd.
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KONISHI Yoshiaki
Nikkiso, Co., Ltd.
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MASUZAWA Toru
School of Engineering, Ibaraki University
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ENDO Seiko
National Cardiovascular Center
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Endo S
Jichi Medical School Tochigi Jpn
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Masuzawa Toru
大阪大学 医学系研究科心臓血管外科
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Tsukamoto Yuki
Nikkiso Co. Ltd.
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Tsukiya Tomonori
The Advanced Medical Engineering Center National Cardiovascular Center Research Institute
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Konishi Yoshiaki
Nikkiso Co. Ltd.
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Taenaka Yoshiyuki
National Cardiovascular Center Research Institute
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Nishida M
National Institute Of Advanced Industrial Science And Technology
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Yamane Takashi
Institute For Human Science And Bioengineering Engineering National Institute Of Advanced Industrial
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Nishida Masahiro
Institute For Human Science And Bioengineering Engineering National Institute Of Advanced Industrial
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Tsukiya Tomonori
Department of Artificial Organs, Research Institute, National Cerebral and Cardiovascular Center
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