Midiani, Luh Putu Ike and Irawan, I Made Duta and Bangse, Ketut and Gunung, I Nyoman (2023) Design of Clean Water Booster Pump for High-Rise Buildings. LOGIC : Jurnal Rancang Bangun dan Teknologi, 23 (3). pp. 203-211. ISSN 1412114X
Text (Similarity Check)
Plagiarsm Check_Logic.pdf - Supplemental Material Available under License Creative Commons Attribution Non-commercial Share Alike. Download (246kB) |
|
Text (Revision Required)
Politeknik Negeri Bali Mail - LOGIC - Revision Required.pdf - Supplemental Material Available under License Creative Commons Attribution Non-commercial Share Alike. Download (138kB) |
|
Text (Accept Submission)
Politeknik Negeri Bali Mail - [logic] Editor Decision1.pdf - Supplemental Material Available under License Creative Commons Attribution Non-commercial Share Alike. Download (110kB) |
|
Text (Sending to Production)
Politeknik Negeri Bali Mail - [logic] Editor Decision2.pdf - Supplemental Material Available under License Creative Commons Attribution Non-commercial Share Alike. Download (106kB) |
Abstract
A sanitary system is a supporting component designed to meet the clean water requirements of a building, primarily for sanitation activities. The average sanitary equipment used typically requires a shower pressure of ±1 Bar. However, the shower pressure can be significantly affected by factors such as the distance from the top tank and the building's layout, considering only the pressure due to gravity. To address inadequate shower pressure, an auxiliary pump known as a booster pump is necessary. The need for a booster pump is determined by the cumulative demand from plumbing equipment, where the total capacity required is 6057 liters/hour. To address this demand, the system employs two pump units, each with a capacity of 3 m 3 /hour. The distribution pipes utilized in the system adhere to established standards and are made of random polypropylene with a diameter of 2 inches and a flow rate of 0.005889 m3 /second. The overall head loss resulting from this installation amounts to 31.62 meters. To accommodate the booster system, a pressure tank with a capacity of 67 liters is employed. The minimum working pressure required for the pumps is 1.8 Bar
Item Type: | Article |
---|---|
Subjects: | Ilmu Teknik > Ilmu Keteknikan Industri > Teknik Mesin (dan Ilmu Permesinan Lain) |
Divisions: | Jurusan Teknik Mesin > Prodi D4 Teknologi Rekayasa Utilitas > Publikasi |
Depositing User: | Luh Putu Ike Midiani |
Date Deposited: | 06 Feb 2024 05:56 |
Last Modified: | 06 Feb 2024 05:56 |
URI: | http://repository.pnb.ac.id/id/eprint/10530 |
Actions (login required)
View Item |