The Effect of Liquid Density on Fluid Flow Velocity in Bernoulli's Principle

Laili Mukrimatin, Iik Hayati, Fibri Adistiana

Abstract

This study aims to determine the effect of density on fluid flow velocity based on Bernoulli's principle and Torricelli's law. Density was varied by adding cornstarch to water with different concentrations, namely 0 kg, 0.03 kg, 0.06 kg, 0.09 kg, 0.12 kg, and 0.15 kg, at a fixed solution volume (1.5 liters). The experimental method used was a tool in the form of a perforated bottle placed at a fixed height, then the horizontal distance (x) of the first flow of the liquid was measured to calculate the velocity using the parabolic motion formula. Density was calculated from the ratio of mass to volume (ρ=). The results showed that the higher the cornstarch content, the fluid density increased, while the flow distance and velocity tended to decrease. The increase in density was caused by the increase in solid particles in the solution which caused the flow to become slower because the driving force did not change. These findings indicate that density has a significant influence on fluid flow velocity, so it can be concluded that the greater the density of a fluid, the lower the flow velocity. This research supports the understanding that physical factors such as density need to be considered in real flow systems, both in education and engineering applications.

Keywords

fluid flow; velocity; density; cornstarch; Bernoulli's principle

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References

Bhirawa, W. T. (2017). Sistem Hidrolik Pada Mesin Industri. Jurnal Teknologi Industri, 6.

Chusni, M. M., Nisa, K., Haidir, M., & Fitriyani, R. (2018). Penerapan Diferensial untuk Mengukur Laju Perubahan Volume Air Galon. JIPFRI (Jurnal Inovasi Pendidikan Fisika dan Riset Ilmiah), 2(1), 8-13.

Jalaluddin, J., Akmal, S., & Ishak, I. (2019). Analisa profil aliran fluida cair dan pressure drop pada pipa L menggunakan metode simulasi computational fluid dynamic (CFD). Jurnal Teknologi Kimia Unimal, 8(1), 97-108.

Kua, M. Y., Maing, C. M., Tabun, Y. F., Jibril, A., Setiawan, J., Heriyanto, L., ... & Dolo, F. X. (2021). Teori dan Aplikasi Fisika Dasar. Aceh : Yayasan Penerbit Muhammad Zaini.

Lita, R. S. (2021). Pengaruh konsentrasi zat padat terhadap massa jenis larutan. Jurnal Kimia dan Material, 9(1), 23-30.

Nainggolan, A. D. (2022). buku fisika siswa kelas XI berbasis HOTS semester ganjil. Jawa Barat : Guepedia.

Nuraeni, A., Wulandari, S., Azzahra, U. H., RM, A., Ardianti, R., & Maulidah, R. A. (2020). Uji Eksperimen Efisiensi Kerja pada Rancangan Hydraulic Ram Pump dengan Water Hammer. DIFFRACTION: Journal for Physics Education and Applied Physics, 2(1), 52-58.

Pratama, D., Hadiningrum, K., & Muldiani, R. F. (2022). Studi Awal Pengaruh Temperatur terhadap Karakteristik Aliran Fluida Pada Belokan Pipa 90° melalui Simulasi. Jurnal MIPA, 11(2), 68-71.

Puspitasari, A., Susanto, W. H., & Wijayanti, N. (2018). Pengaruh Proporsi Maizena: Slurry dan Lama Pemasakan Terhadap Karakteristik Lempok Waluh. Jurnal Pangan dan Agroindustri, 6(2), 41-51.

Romdani, A. (2024). Mekanika Fluida: Teori Fundamental dan Aplikasinya. MEGA PRESS NUSANTARA.

Sami, M. (2016). Pemanfaatan Panas Limbah Sekam Padi pada Proses Pengeringan Gabah. Jurnal Sains Dan Teknologi Reaksi, 9(2).

Sjarif, S. R., Nuryadi, A. M., Sulistiorini, J., & Sukron, A. (2021). Penambahan Glukosa Dan Pengaruh Derajat Brix Untuk Menghambat Proses Kristalisasi Pada Produk Gula Cair Nira Aren. Jurnal Penelitian Teknologi Industri, 13(1), 27-36.

Sulthoni, M. I. (2016). Perbandingan Analisis Pressure Drop Pada Pipa Lengkung 900 Dan 1350 Melalui Modifikasi Bagan Moody Untuk Laju Aliran. Jurnal Pembelajaran Fisika, 4(5), 527-534.

Thahir, A. (2018). Uji Kuat Tekan Dan Keausan Bahan Kampas Rem Dari Komposisi Tempurung Kemiri Dan Serat Bambu. JFT: Jurnal Fisika dan Terapannya, 5(1), 40-52.

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