The Manufacturing of Installation Series and Parallel Pump Test Tool


Authors : Nia Nuraeni Suryaman; Udin Komarudin; Adhita Prasetia

Volume/Issue : Volume 9 - 2024, Issue 11 - November


Google Scholar : https://tinyurl.com/m45avatu

Scribd : https://tinyurl.com/mtyw6wuj

DOI : https://doi.org/10.5281/zenodo.14355998


Abstract : Pumps are one of the most frequently used tools by humans in their daily lives. The function of the pump is to raise a fluid from a low surface to a higher surface. To meet the working pressure and fluid flow capacity requirements in a pump operating system, it can perform single, series and parallel circuits. In the world of education, an educator is said to be successful if it produces quality graduates. Quality means that student graduates can understand and apply all the knowledge gained while working. An engineer must be able to know the characteristics of various types of pumps, one of which is a centrifugal pump. This is done so that the engineer can use the tool according to the needs of the job. This is done so that the engineer can use the tool according to the needs of the job. One way to get this is to provide props or pump test equipment. Therefore, the purpose of this study is to design and build series and parallel pump test equipment that can be used for student practicum. The research methods carried out include the design of 3D series and parallel pump test equipment, the process of manufacturing test equipment, assembling the electrical wiring of pump test equipment and conducting tests. The final result of this study is that series and parallel pump test equipment can be used for practicum testing.

Keywords : Pumps; Test Equipment; Series Pumps; Parallel Pumps.

References :

  1. Z. H. Siregar, R. Siregar, H. R. Soaloon, and E. S. Saragih, “Desain Dan Pembuatan Alat Uji Pompa Sentrifugal Skala Laboratorium,” J. Ilm. Tek. Mesin, Ind. Elektro Dan Sipil, vol. 4, no. 1, pp. 282–291, 2023, doi: 10.54123/vorteks.v4i1.268.
  2. B. Hutabarat, “Analisis Unjuk Kerja Pompa Sentrifugal Dengan Variasi Head,” 2019.
  3. A. Rijanto and S. Rahayuningsih, “Analisis Head Losses Pada Mesin Pompa Air Sawah,” Majamecha, vol. 4, no. 1, pp. 60–69, 2022, doi: 10.36815/majamecha.v4i1.1905.
  4. I. Febrianto, M. Khabib, and B. S. Nugraha, “Perancangan Sistem Pompa Paralel Dengan Daya Bervariasi Untuk Meningkatkan Kapasitas Air,” J. Crankshaft, vol. 1, no. 1, 2018, doi: 10.24176/crankshaft.v1i1.2584.
  5. H. Saputra, “Rancang Bangun Peralatan Uji Karakteristik Pompa Sentrifugal Susunan Seri dan Paralel untuk Pembelajaran Sistem Pompa dan Perpipaan,” J. Teknol. dan Ris. Terap., vol. 2, no. 1, pp. 36–41, 2020, doi: 10.30871/jatra.v2i1.2857.
  6. I. Syahrizal and D. Perdana, “Kajian Eksperimen Instalasi Pompa Seri dan Paralel Terhadap Efisiensi Penggunaan Energi,” Turbo  J. Progr. Stud. Tek. Mesin, vol. 8, no. 2, pp. 194–200, 2020, doi: 10.24127/trb.v8i2.1056.
  7. Y. Kurniawan and Kusnandar, “Uji Karakteristik Pompa Sentrifugal Pada Cooling Hydronic System Menggunakan Refrijeran Ramah Lingkungan,” J. Teknol. Terap., vol. 4, no. 1, pp. 63–71, 2018.
  8. M. S. de la Fuente, J. González, C. M. González, R. B. Perotti, and E. Reynaud, “NPSH Experimental Data for Two Centrifugal Pumps,” 2018, p. 1410. doi: 10.3390/proceedings2231410.
  9. M. A. A. Kadim, R. J. Tilefih, and A. H. Shakir, “NUMERICAL ANALYSIS FOR (H-Q) CURVE OF CENTRIFUGAL PUMPS USING NATURAL AND CONSTRAINED CUBIC SPLINE INTERPOLATIONS,” J. Mech. Eng. Res. Dev., vol. 41, no. 3, pp. 6–8, 2018.
  10. H. Hindaresmi and M. Toifur, “OPTIMASI NILAI h1/d PADA KEBERLAKUAN PERSAMAAN BERNOULLI,” J. Kumparan Fis., vol. 5, no. 1, pp. 63–68, 2022, doi: 10.33369/jkf.5.1.63-68.
  11. Helmizar, E. Setiawan, and A. Nuramal, “Karakteristik Aliran Pada Susunan Pompa Yang Berbeda Head Secara Seri Dan Paralel,” Tek. Mesin, Univ. Bengkulu, vol. 1, no. 0736, pp. 31–36, 2019.
  12. M. F. Yamin, “Perancangan Dan Pengujian Alat Uji Pompa Seri Dan Paralel,” 2016.

Pumps are one of the most frequently used tools by humans in their daily lives. The function of the pump is to raise a fluid from a low surface to a higher surface. To meet the working pressure and fluid flow capacity requirements in a pump operating system, it can perform single, series and parallel circuits. In the world of education, an educator is said to be successful if it produces quality graduates. Quality means that student graduates can understand and apply all the knowledge gained while working. An engineer must be able to know the characteristics of various types of pumps, one of which is a centrifugal pump. This is done so that the engineer can use the tool according to the needs of the job. This is done so that the engineer can use the tool according to the needs of the job. One way to get this is to provide props or pump test equipment. Therefore, the purpose of this study is to design and build series and parallel pump test equipment that can be used for student practicum. The research methods carried out include the design of 3D series and parallel pump test equipment, the process of manufacturing test equipment, assembling the electrical wiring of pump test equipment and conducting tests. The final result of this study is that series and parallel pump test equipment can be used for practicum testing.

Keywords : Pumps; Test Equipment; Series Pumps; Parallel Pumps.

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