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Solid-liquid two-phase flow in centr...
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Zhu, Zuchao.
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Solid-liquid two-phase flow in centrifugal pump
Record Type:
Electronic resources : Monograph/item
Title/Author:
Solid-liquid two-phase flow in centrifugal pump/ by Zuchao Zhu, Yi Li, Zhe Lin.
Author:
Zhu, Zuchao.
other author:
Li, Yi.
Published:
Singapore :Springer Nature Singapore : : 2023.,
Description:
vii, 233 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction -- Solid-liquid two-phase calculation model and method -- Wear characteristics of static walls -- Two-phase flow characteristics and transportation performance in centrifugal pump -- Wear characteristics of the wall surface in centrifugal pump -- Engineering calculation of solid-liquid two-phase pump.
Contained By:
Springer Nature eBook
Subject:
Centrifugal pumps. -
Online resource:
https://doi.org/10.1007/978-981-99-1822-5
ISBN:
9789819918225
Solid-liquid two-phase flow in centrifugal pump
Zhu, Zuchao.
Solid-liquid two-phase flow in centrifugal pump
[electronic resource] /by Zuchao Zhu, Yi Li, Zhe Lin. - Singapore :Springer Nature Singapore :2023. - vii, 233 p. :ill., digital ;24 cm. - Fluid mechanics and its applications,v. 1362215-0056 ;. - Fluid mechanics and its applications ;v. 136..
Introduction -- Solid-liquid two-phase calculation model and method -- Wear characteristics of static walls -- Two-phase flow characteristics and transportation performance in centrifugal pump -- Wear characteristics of the wall surface in centrifugal pump -- Engineering calculation of solid-liquid two-phase pump.
This book conducts a systematic study on internal flow characteristics and performance of centrifugal pump for solid-liquid mixed transportation. First, the applicability of the computational model for two-phase flow is analyzed. Then the relationship between the two-phase flow characteristics and wall wear in the pipeline is revealed. And the flow characteristics in centrifugal pumps are analyzed in relation to conveying performance and wall wear. Finally, the engineering application calculation of the mixed transportation pump with different impeller structures is carried out. The target audience of this book is researchers who perform calculations and engineering applications of solid-liquid two-phase pumps. This book considers the influence of the particle size on the force magnitude of the particles and analyzes the applicability of different solid-liquid two-phase calculation models. Considering the different motion trajectories of particles colliding with dry wall, wet wall, stationary wall, and moving wall, visual experiments are used to study the collision rebound model of different walls. The collision rebound model is applied to the numerical simulation of solid-liquid mixed transport.
ISBN: 9789819918225
Standard No.: 10.1007/978-981-99-1822-5doiSubjects--Topical Terms:
816168
Centrifugal pumps.
LC Class. No.: TJ919
Dewey Class. No.: 621.67
Solid-liquid two-phase flow in centrifugal pump
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Introduction -- Solid-liquid two-phase calculation model and method -- Wear characteristics of static walls -- Two-phase flow characteristics and transportation performance in centrifugal pump -- Wear characteristics of the wall surface in centrifugal pump -- Engineering calculation of solid-liquid two-phase pump.
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This book conducts a systematic study on internal flow characteristics and performance of centrifugal pump for solid-liquid mixed transportation. First, the applicability of the computational model for two-phase flow is analyzed. Then the relationship between the two-phase flow characteristics and wall wear in the pipeline is revealed. And the flow characteristics in centrifugal pumps are analyzed in relation to conveying performance and wall wear. Finally, the engineering application calculation of the mixed transportation pump with different impeller structures is carried out. The target audience of this book is researchers who perform calculations and engineering applications of solid-liquid two-phase pumps. This book considers the influence of the particle size on the force magnitude of the particles and analyzes the applicability of different solid-liquid two-phase calculation models. Considering the different motion trajectories of particles colliding with dry wall, wet wall, stationary wall, and moving wall, visual experiments are used to study the collision rebound model of different walls. The collision rebound model is applied to the numerical simulation of solid-liquid mixed transport.
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Energy (SpringerNature-40367)
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