Pengaruh Diameter Input dan Debit Aliran pada Cyclone Dengan Metode Cfd Untuk Menghasilkan Keefektifan Laju Aliran. (The Effect of Input Diameter and Flow Discharge on Cyclone With Cfd Method To Produce Flow Rate Effectiveness).

Marsuki, Ismail (2024) Pengaruh Diameter Input dan Debit Aliran pada Cyclone Dengan Metode Cfd Untuk Menghasilkan Keefektifan Laju Aliran. (The Effect of Input Diameter and Flow Discharge on Cyclone With Cfd Method To Produce Flow Rate Effectiveness). Undergraduate thesis, Universitas 17 Agustus 1945 Surabaya.

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Abstract

This study analyzes a cyclone system in CFD (Computation Fluid Dynamic) Software in order to see the contours of conditions such as speed or pressure on the cyclone. Software is used as a preprocessor to describe the configuration and definition of cyclones. The cyclone dimensions used Side length is 1700 mm with a diameter of 740 mm, with flow discharge operating conditions of 24.3 m3 / min, 33.94 m3 / min, and 38.19 m3 / min. CFD Flow Simulation Solidwork 2022 is used to simulate particle flow fields in cyclones, This study aims to determine the flow rate by varying the input diameter at each different flow discharge. The predictions produced provide information on the effectiveness of cyclones with values that must be generated Low pressure, high velocity, and low level acoustic also compare analytical analysis of cyclone simulation results. The results of the study showed that a low pressure value of cyclone with an input diameter of 4 inches at a flow rate of 38.19 m3 / min with a pressure value of 281.62 mbar, while the results of velocity analysis obtained the highest value of cyclone with an input diameter of 4 inches at a flow rate of 38.19 m3 / min with the results of a velocitnya value of 83.145 m / s, and also in the results of acoustic level analysis obtained the lowest value of cyclone with an input diameter of 8 inches at a flow rate of 24.30 m3 / min with The result of the acoustic level value is 57.19 dB, the value is low because of the low velocity rate so that the frictional force that occurs in the cyclone is low. So the cyclone design with an input diameter of 4 inches is closest to effective in general performance. Comparison Results The theoretical calculation on the input diameter of 4 inches is in its best performance when using a flow rate of 38.19 m3 / min where the resulting value is 288.38 m / s directly proportional to the calculation results using the same software simulation is in its best performance at an input diameter of 4 inches with the use of a flow rate of 38.19 m3 / min where the resulting value is 348.38 m / s. So the result of the Vθ max value has an effect on the contour of the rate The flow contained in the cyclone system to produce effective work performance.

Item Type: Thesis (Undergraduate)
Uncontrolled Keywords: Cyclone, CFD, pneumatic Conveying, Velocity
Subjects: T Technology > TJ Mechanical engineering and machinery
Divisions: Fakultas Teknik > Program Studi Teknik Mesin
Depositing User: 1421900018 Ismail Marsuki
Date Deposited: 27 Jun 2024 03:03
Last Modified: 27 Jun 2024 03:03
URI: http://repository.untag-sby.ac.id/id/eprint/30061

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