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88891

Velocity Exponent for Hydrodynamic Cavitation Erosion.

Article

Last updated: 22 Jan 2023

Subjects

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Tags

Mechanical Power Engineering

Abstract

The main purpose of this paper is to investigate the effect of throat velocity on cavitation erosion rate in steady –state period and examine the existence of power law between the erosion rate and the flow velocity and evaluates the velocity exponents. Weight loss rate tests were conducted in a cavitation water tunnel in velocity range 24-42.5 m/s at constant cavitation number for three different shapes of cavitation inducer and various inducer sizes ranging from 15 to 27 mm. The erosion of 99 percent pure aluminum was determined using a sidewall specimen for the three inducers and using the cylinder itself as specimen. For all specimens and operating conditions, weight loss rate was found to be strongly dependent on the flow velocity and the weight loss rate varied with some power of the velocity (WLR∝U^e) . The velocity exponents obtained in the present work ranged from 3 to 12.62 depending on the source shape and size and the place of erosion. The experimental results indicated that the velocity exponent was proportional to the size of the inducer raised to two characteristic exponents: in the size range 15-20 mm was of order 0.47 but for size of 20-27 mm the exponent was about 1.85 for all sidewall erosion specimens. The two exponents were independent of the geometry of the inducer. However, for erosion of cylinder itself as a specimen the two exponents were 0.15 for size 15-20 mm and 2.67 for size 20-26 mm

DOI

10.21608/bfemu.2020.88891

Keywords

Cavitation, Erosion, Velocity exponent, Cavitation number, weight loss

Authors

First Name

mohamed

Last Name

Hosien

MiddleName

Abdelaziz

Affiliation

Mechanical Power Engineering Department, Faculty of Engineering, Menoufyia University, Shebin El-Kom, Egypt

Email

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City

Shebin El-Kom

Orcid

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First Name

S. M.

Last Name

Selim

MiddleName

-

Affiliation

Mechanical Power Engineering Department, Faculty of Engineering, Menoufyia University, Shebin El-Kom, Egypt

Email

-

City

Shebin El-Kom

Orcid

-

Volume

42

Article Issue

2

Related Issue

13234

Issue Date

2017-06-01

Receive Date

2017-01-17

Publish Date

2020-05-13

Page Start

26

Page End

33

Print ISSN

1110-0923

Online ISSN

2735-4202

Link

https://bfemu.journals.ekb.eg/article_88891.html

Detail API

https://bfemu.journals.ekb.eg/service?article_code=88891

Order

10

Type

Research Studies

Type Code

1,205

Publication Type

Journal

Publication Title

MEJ. Mansoura Engineering Journal

Publication Link

https://bfemu.journals.ekb.eg/

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Details

Type

Article

Created At

22 Jan 2023