Perbandingan Pressure dan Velocity Terhadap Improvement Sistem Pendistribusian Air Penyiraman Tanaman Kangkung

Abd Rohman, Muhamad Hanhan Nugraha, Dede Abdulah Rinjani, Ridwan Maulana R

Abstract


The water distribution system on agricultural land is one factor that determines agricultural yields. The land in the Mekar Jaya Farmer Group, Cikupa Village, Karangnunggal District, Tasikmalaya Regency is rainfed land constrained in watering the land planted with kale. The sprinkling system that has been made uses a booster pump to drain the sprinkling water in the piping system, which has been arranged in such a way and is still constrained by an uneven distribution at some points so that the watering is not optimal so in this study improvements will be made with experimental methods and simulations on the device software by changing the T joint (T knee) which has an angle of 90° to a 45° angle. The simulation results show a significant change in pressure from 3.08 Pa at a 90° T joint to 9.63 Pa at a T joint at 45°.

 


Keywords


water distribution, piping, T knee, Simulation Software, and farmer groups.

Full Text:

PDF

References


A. Fajar, M. Y. J. Purwanto, and S. D. Tarigan, “Efisiensi Sistem Irigasi Pipa untuk Mengidentifikasi Tingkat Kelayakan Pemberian Air dalam Pengelolaan Air Irigasi,” J. Irig., vol.11, no.1, p. 33, 2016, doi: 10.31028/ji.v11.i1.33-42.

A. Ghurri and S. G. Tista, “Pengaruh Sudut Nozzle Terhadap Permanent Pressure Drop and Discharge Coefficient Pada Nozzle Flow Meter,” Tek. J. Sains dan Teknol., vol. 11, no. 2, p. 108, 2015, doi: 10.36055/tjst.v11i2.6651.

B. dwi Prakoso, “ANALISIS DEBIT AIR DAN RUGI BELOKAN PADA PIPA TEE,” pp. 1–7. 2020.

D. G. O. Sastrawan, E. Elisa, and K. R. Dantes, “Analisis dan Optimalisasi Aliran Fluida pada Prototype Kendaraan Ganesha Surface Water dengan Menggunakan Software Solidworks,” J. Pendidik. Tek. Mesin Undiksha, vol. 9, no. 1, pp. 59–70, 2021, doi: 10.23887/jptm.v9i1.33122.

D. Kurniadi, B. Suwandhika, and A. Trisnobudi, “Pengukuran Aliran Udara Dalam Pipa Menggunakan Gelombang Ultrasonik Dengan Metoda Korelasi Silang,” J. Otomasi Kontrol dan Instrumentasi, vol. 1, no. 1, p. 41, 2011, doi: 10.5614/joki.2009.1.1.5.

D. Kusumo and R. Afandi, “Simulasi Pola Aliran Udara pada Wind Tunnel Type Terbuka dengan Test Section 40 cm X 40 cm X 80 cm,” vol. 7, pp. 1–15,

D. Muna and D. F. Masithoh, “PEMBUATAN ALAT PERCOBAAN MANOMETER TERBUKA UNTUK MENENTUKAN NILAI P 0 BERDASARKAN HUKUM BOYLE,” pp. 239–244, 2016.

Fernando, Eki. 2021. “Manometer Design For Measuring Head Losses In Piping Test” 13: 1–11. https://doi.org/10.21070/ijins.v13i.531.

I. PRIYADI, F. HADI, R. FAURINA, and I. AGUSTIAN, “Ventilator Non-Invasive berbasis Kontrol Volume dengan Orifice Plate Flow Meter,” ELKOMIKA J. Tek. Energi Elektr. Tek. Telekomun. Tek. Elektron., vol. 10, no. 2, p. 259, 2022, doi: 10.26760/elkomika.v10i2.259.

I. Rumanto, S. Sunaryo, and A. Irfan, “Analisis Computational Fluid Dynamic (Cfd) Penyebaran Panas Pada Dapur Peleburan Alumunium,” Device, vol. 11, no. 1, pp. 34–39, 2021, doi: 10.32699/device.v11i1.1785.

Lombard, Matt. 2018. “Introducing SolidWorks.” Mastering SolidWorks, 3–24. https://doi.org/10.1002/9781119516743.ch1.

L. Nurcholis, “Aliran fluida pada jaringan pipa,” ISSN 1693 - 3451 Vol. 7 Juni 2008, vol. 7, no. 1, 2008.

L. Yulian Fitriani and R. Faizal, “Analisa Aliran Fluida Pengaruh Elbow, Fitting, Valve Dan Perubahan Luas Permukaan Dalam Sistem Perpipaan,” pp. 1–6, 2014.

Nurnawaty. 2020. “Analisis Perubahan Tinggi Tekanan Akibat Sudut Belokan 90 Derajat Dan 45 Derajat Dengan Menggunakan Fluid Friction Apparatus” 13: 28–37.

R. Maulana, M. Juarsa, K. Susanto, and J. P. Witoko, “Karakterisasi Flowmeter Untuk Laju Aliran Rendah Pada Sirkulasi Alami Di Untai Fassip-01,” Semin. Nas. Sains dan Teknol. 2016 J. Univ. Muamadiyah Jakarta, no. November, pp. 1–7, 2016.

S. Krido Saptomo, R. Isnain, and B. Indra Setiawan, “Irigasi Curah Otomatis Berbasis Sistem Pengendali MIKRO,” J. Irig., vol. 8, no. 2, pp. 115–125, 2013.

S. Maulana, “pengaruh temperature terhadap respon amplitude dengan menggunkan gelombang ultrasonic pola aliran Slug pipa horizontal,” Inov. Mesin, vol. 2, pp. 43–50, 2020, doi: 10.21070/ijins.v13i.533

S. Widodo, K. Suharno, and X. Salahudin, “Analisis Aliran Air dalam Pipa Bercabang,” Wahana Ilmuan, vol. 1, pp. 77–84, 2016, [Online]. jurnal.untidar.ac.id/index.php/wahana/article/view/252/205.

Yulian Fitriani, Lisa, and Ruly Faizal. 2014. “Analisa Aliran Fluida Pengaruh Elbow, Fitting, Valve Dan Perubahan Luas Permukaan Dalam Sistem Perpipaan,” 1–6.




DOI: http://dx.doi.org/10.31000/mbjtm.v7i1.8035

Article Metrics

Abstract - 133 PDF - 278

Refbacks

  • There are currently no refbacks.


Copyright (c) 2023 Abd Rohman ST.,MT., Muhamad Hanhan Nugraha, Dede Abdulah Rinjani, Ridwan Maulana R

Motor Bakar : Jurnal Teknik Mesin (ISSN: 2549-5038 e-ISSN: 2580-4979)

Copyright © 2017-2020 Program Studi Teknik Mesin Fakultas Teknik Universitas Muhammadiyah Tangerang. All rights reserved.


This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0) License