Studi Perbandingan selenoid kapiler dan selenoid ekspansi pada Mesin Es serta di kontrol Aplikasi Blynk

Authors

  • Adi Mustofa Universitas Krisnadwipayana
  • ujang wiharja Universitas Krisnadwipayana

DOI:

https://doi.org/10.31851/ampere.v8i2.11437

Keywords:

Ice, Solenoids, Capillary, Expansion, Blynk

Abstract

Currently, the use of this ice machine still uses a solenoid connected to a capillary and the results cannot
be targeted. The use of an ice machine with the ESP8266 module is combined with the blynk application
which is a combination with the Internet of Thinks (IoT) system which makes the performance of using the
ice machine can be run remotely or with a smartphone. Reduced costs and less operator effort to expend
for ice making. The ice machine was finally integrated with the ESP8266 Module, the blynk application
and added with one solenoid connected to an expansion which functions as a substitute for the capillary
selenoid if the need for ice is needed quickly in the process and will return to the capillary selenoid during
normal production. The results showed that the ice machine with capillary selenoid was slower in the ice
production process with 1 hour of production time of 5 kg of ice and required electricity consumption
during production of 0.814 KWH, while the ice machine after using selenoid expansion the machine
production process was faster than the capillary selenoid system by producing ice production for 1 hour
with a yield of 8 kg of ice and requires electricity consumption during production of 0.855 KWH, with
pressure for expansion of 18 bar.

References

A. Saleh and Eka Darmana, “Peranan Penting Selenoid Valve Pada Sistem Mesin Pendingin Ruang Penyimpanan Bahan Makanan Di Kapal,” Maj. Ilm. Gema Marit., vol. 23, no. 2, pp. 158–163, 2021, doi: 10.37612/gema-maritim.v23i2.171.

Cecep Sunardi a, Arda Rahardja L, and A. E. Sukamto, “Pengaruh Variasi Alat Ekspansi Pipa Kapiler dan TXV pada Performansi Sistem Air blast freezer dalam Pembekuan Daging Ayam,” Pros. Semin. Nas. Vokasi Indones., vol. 1, no. 1, pp. 2645–6493, 2018.

F. Istihgfar, R. Kurniawan, and M. Y. Puriza, “Rancang Bangun Alat Pengendali dan Monitoring Konsumsi Pemakaian Listrik berbasis Arduino dan Aplikasi Blynk,” in Proceedings of National Colloqoium Research And Community Service, vol. 3, pp. 109–112,.

M. F. Pela and R. Pramudita, “Sistem Monitoring Penggunaan Daya Listrik Berbasis Internet of Things Pada Rumah Menggunakan Aplikasi Blynk,” Infotech J. Technol. Inf., vol. 7, no. 1, Hal 47, p. 54,.

S. Bahri, M. Jumnahdi, and W. Sunanda, “Rancang Bangun Alat Pemantau Arus, Tegangan dan Daya berbasis Aplikasi Blink (Studi di Gedung Darma Penelitian Universitas Bangka Belitung,” Electrician, vol. 16, no. 3, pp. 264 – 270,.

Dika Herdika. Endah Fitriani, “Monitoring Daya Listrik dan Kendali Beban pada Rumah Tinggal Menggunakan ESP8266 Berbasis IoT,” J. Ampere, vol. 7, no. 2, pp. 84–93,.

P. R. Pusdekar and V. K. Kriplani, “Performance Comparison of Capillary Tube and Thermostatic Expansion Valve (TEV) System,” Int. J. Sci. Res. Publ., vol. 4, no. 5, pp. 1–4,.

Nila Pratiwi. Bengawan Alfaresi. Khoirul Kohariza, “Monitoring Pengisian Tangki Fluida Cair Menggunakan Mikrokontroller Node MCU berbasis Aplikasi Blink,” J. Ampere, vol. 7, no. 2, pp. 161 – 165,.

Dedi Irawan, Endah Fitriani, “Rancang Robot Pemotong Rumput Otomatis Berbasis Arduino Uno Dengan Sistem Kendali Aplikasi Blynk”,” J. Ampere, vol. 6, no. 2, pp. 65 – 74,.

A. Shukla, S. A. Khan, and A. Hasan, “Design and Implementation of IoT based Air Conditioning System using Blynk,” Int. J. Eng. Adv. Technol. (IJEAT, vol. 9, no. 1, pp. 487–493,.

H. Chen, Z. Wu, and L. Zhang, “Performance Comparison of Capillary Tube and Electronic Expansion Valve System for Mobile Air Conditioning,” Int. J. Refrig., vol. 107, pp. 114–122,.

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Published

2023-12-30

How to Cite

Mustofa, A., & ujang wiharja. (2023). Studi Perbandingan selenoid kapiler dan selenoid ekspansi pada Mesin Es serta di kontrol Aplikasi Blynk. Jurnal Ampere, 8(2), 95–103. https://doi.org/10.31851/ampere.v8i2.11437