ANALISA STRUKTUR DAN PERFORMA IMPELLER POMPA SENTRIFUGAL DENGAN MENGGUNAKAN COMPUTATIONAL FLUID DYNAMIC AND FINITE ELEMENT METHOD

Centrifugal pumps are divided into two main components, namely the impeller and the volute. The impeller is a rotating pump component, while the volute is a stationary pump component. The current problem in the industrial world is that the pump capacity that operates is not in accordance with the wr...

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Main Authors: Gunawan Dwi Haryadi, Ismoyo Haryanto, I.M.W. Ekaputra, Rando Tungga Dewa, Deka Setyawan
Format: Article
Language:English
Published: University of Brawijaya 2022-12-01
Series:Rekayasa Mesin
Subjects:
Online Access:https://rekayasamesin.ub.ac.id/index.php/rm/article/view/1199
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author Gunawan Dwi Haryadi
Ismoyo Haryanto
I.M.W. Ekaputra
Rando Tungga Dewa
Deka Setyawan
author_facet Gunawan Dwi Haryadi
Ismoyo Haryanto
I.M.W. Ekaputra
Rando Tungga Dewa
Deka Setyawan
author_sort Gunawan Dwi Haryadi
collection DOAJ
description Centrifugal pumps are divided into two main components, namely the impeller and the volute. The impeller is a rotating pump component, while the volute is a stationary pump component. The current problem in the industrial world is that the pump capacity that operates is not in accordance with the written capacity so that the pump does not work optimally. In addition, the structural analysis of the pump is minimally carried out so that damage to the pump often occurs. To overcome this, it is necessary to analyze the performance and structure of the centrifugal pump design using computational fluid dynamics and static structural analysis methods on variations in the number of blades & impeller rotation speed. The results of the CFD analysis obtained are validated using existing product specifications and studies that have been carried out. The maximum value of the resulting von-mises stress is 20,238 Mpa, the maximum value of the resulting strain is 0.00010133, while the maximum total deformation value is 0.051984 mm. The three maximum values ​​occur in the variation of the 7 blade impeller with a rotational speed of 1800 rpm.
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spelling doaj.art-35113f6d628c4b9e9c2c40d8d19bd89a2023-01-03T17:31:39ZengUniversity of BrawijayaRekayasa Mesin2338-16632477-60412022-12-0113377378610.21776/jrm.v13i3.1199910ANALISA STRUKTUR DAN PERFORMA IMPELLER POMPA SENTRIFUGAL DENGAN MENGGUNAKAN COMPUTATIONAL FLUID DYNAMIC AND FINITE ELEMENT METHODGunawan Dwi Haryadi0Ismoyo Haryanto1I.M.W. Ekaputra2Rando Tungga Dewa3Deka Setyawan4Universitas DiponegoroUniversitas DiponegoroUniversitas Sanata Dharma Universitas Pertahanan Indonesia Universitas DiponegoroCentrifugal pumps are divided into two main components, namely the impeller and the volute. The impeller is a rotating pump component, while the volute is a stationary pump component. The current problem in the industrial world is that the pump capacity that operates is not in accordance with the written capacity so that the pump does not work optimally. In addition, the structural analysis of the pump is minimally carried out so that damage to the pump often occurs. To overcome this, it is necessary to analyze the performance and structure of the centrifugal pump design using computational fluid dynamics and static structural analysis methods on variations in the number of blades & impeller rotation speed. The results of the CFD analysis obtained are validated using existing product specifications and studies that have been carried out. The maximum value of the resulting von-mises stress is 20,238 Mpa, the maximum value of the resulting strain is 0.00010133, while the maximum total deformation value is 0.051984 mm. The three maximum values ​​occur in the variation of the 7 blade impeller with a rotational speed of 1800 rpm.https://rekayasamesin.ub.ac.id/index.php/rm/article/view/1199centrifugal pumpimpellernumerical simulation bladecom-putational fluid dynamicstatic structural analysis
spellingShingle Gunawan Dwi Haryadi
Ismoyo Haryanto
I.M.W. Ekaputra
Rando Tungga Dewa
Deka Setyawan
ANALISA STRUKTUR DAN PERFORMA IMPELLER POMPA SENTRIFUGAL DENGAN MENGGUNAKAN COMPUTATIONAL FLUID DYNAMIC AND FINITE ELEMENT METHOD
Rekayasa Mesin
centrifugal pump
impeller
numerical simulation blade
com-putational fluid dynamic
static structural analysis
title ANALISA STRUKTUR DAN PERFORMA IMPELLER POMPA SENTRIFUGAL DENGAN MENGGUNAKAN COMPUTATIONAL FLUID DYNAMIC AND FINITE ELEMENT METHOD
title_full ANALISA STRUKTUR DAN PERFORMA IMPELLER POMPA SENTRIFUGAL DENGAN MENGGUNAKAN COMPUTATIONAL FLUID DYNAMIC AND FINITE ELEMENT METHOD
title_fullStr ANALISA STRUKTUR DAN PERFORMA IMPELLER POMPA SENTRIFUGAL DENGAN MENGGUNAKAN COMPUTATIONAL FLUID DYNAMIC AND FINITE ELEMENT METHOD
title_full_unstemmed ANALISA STRUKTUR DAN PERFORMA IMPELLER POMPA SENTRIFUGAL DENGAN MENGGUNAKAN COMPUTATIONAL FLUID DYNAMIC AND FINITE ELEMENT METHOD
title_short ANALISA STRUKTUR DAN PERFORMA IMPELLER POMPA SENTRIFUGAL DENGAN MENGGUNAKAN COMPUTATIONAL FLUID DYNAMIC AND FINITE ELEMENT METHOD
title_sort analisa struktur dan performa impeller pompa sentrifugal dengan menggunakan computational fluid dynamic and finite element method
topic centrifugal pump
impeller
numerical simulation blade
com-putational fluid dynamic
static structural analysis
url https://rekayasamesin.ub.ac.id/index.php/rm/article/view/1199
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AT ismoyoharyanto analisastrukturdanperformaimpellerpompasentrifugaldenganmenggunakancomputationalfluiddynamicandfiniteelementmethod
AT imwekaputra analisastrukturdanperformaimpellerpompasentrifugaldenganmenggunakancomputationalfluiddynamicandfiniteelementmethod
AT randotunggadewa analisastrukturdanperformaimpellerpompasentrifugaldenganmenggunakancomputationalfluiddynamicandfiniteelementmethod
AT dekasetyawan analisastrukturdanperformaimpellerpompasentrifugaldenganmenggunakancomputationalfluiddynamicandfiniteelementmethod