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Journal : Jurnal Keteknikan Pertanian

Potensi Penggunaan Bambu sebagai Tabung Resonator Thermoacoustics Refrigeration Edy Hartulistiyoso; Muhamad Yulianto; Irawan Senatosa
Jurnal Keteknikan Pertanian Vol. 1 No. 1 (2013): Jurnal Keteknikan Pertanian
Publisher : PERTETA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.19028/jtep.01.1.%p

Abstract

AbstractThermoacoustics refrigeration is considered as one of cooling method, which recently developed. This method can be applied for cooling of foods in particular vegetables. The important components in thermoacoustics refrigeration are: resonator tube, Stack, acoustics driver and working fluid. The advantages of thermoacousic refrigeration include the use of relatively simple components, consequent energy saving, and most importantly thing is environmentally friendly. Recent researches has highlighted the necessity to develop resonator tube and stack concerning shape, design, size and basic material which is used to produce resonator tube and stack. This paper comprehensively reviews the current state of technologyto develop shape, design, size, and basic material in the development of thermoacoustics refrigeration. It is concluded that the use of bamboo as basic material can be applied with continuing research of its application may lead to the use of thermoacoustic refrigeration for food and vegetables.Keywords: themoacoustics refrigeration, bamboo, resonator tube, stack, food and vegetablesAbstrakThermoacoustic refrigeration merupakan salah satu metode pendinginan yang saat ini banyak dikembangkan. Metode ini dapat diaplikasikan untuk mendinginkan makanan dan sayur-sayuran. Beberapa komponen komponen penting dalam thermoacoustic refrigeration diantaranya adalah : tabung resonator, stack, pembangkit akustik dan fluida kerja. Keunggulan penggunaan metode thermoacoustic refrigeration sebagai metode pendinginan adalah : penggunaan komponen yang lebih sedikit, penghematan energi, dan yang paling penting adalah ramah lingkungan. Penelitian-penelitian terbaru banyak memfokuskan pada pengembangan tabung resonator dan stack terutama pada hal-hal yang berkaitan dengan bentuk, design, ukuran dan material dasar yang digunakan pada pembuatan tabung resonator dan stack. Artikel ini secara komprehensif meninjau kondisi perkembangan teknologi yang berkaitan dengan bentuk, design, ukuran dan material dasar pada pengembangan thermoacoustic refrigeration. Artikel ini mempunyai kesimpulan bahwa penggunaan bambu sebagai tabung resonansi dapat diaplikasikan dengan penelitian yang berkelanjutan untuk dapat diaplikasikan juga sebagai thermoacoustic refrigeration untuk makanan dan sayur-sayuran.Kata kunci: thermoacoustic refrigeration, bambu, tabung resonansi, stack, makanan dan sayur-sayuranDiterima: 17 Juni 2013; Disetujui: 26 September 2013
Performance profile of Cold Storage Using R32 as Refrigerant for Traditional Fishing Boat with Photovoltaic as Energi Source Suhengki, Suhengki; Manik, Henry Munandar; Hartulistiyoso, Edy; Sumantri, Willi; Yulianto, Muhamad
Jurnal Keteknikan Pertanian Vol. 12 No. 2 (2024): Jurnal Keteknikan Pertanian
Publisher : PERTETA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.19028/jtep.012.2.184-203

Abstract

This paper discusses the performance of cold storage using R32 refrigerant. R32 is one of the recommended refrigerant with the main advantage low ODP and GWP (Global Warming Potential) value of around 0 and 675. However, because of this refrigerant classified as a new refrigerant, the implementation is limited to air conditioning and heat pump. In this paper, R32 will be tested for cold storage applications. The cold storage performance will be studied about the achieved temperature, power consumption, cooling capacity and Coefficient of Performance without load. The testing was carried out in 2 ways, cold storage testing on a lab scale and direct testing on a 5 GT fishing boat. The performance results show that both tests on a lab scale and tests directly on a fishing boat without a load can reach a cold storage room temperature of -18oC. Meanwhile, the compressor power consumption supplied by photovoltaic is 0.653-0.776 kW. Based on the test results, shows that R32 has a positive possibility of being applied to cold storage.