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Pengaruh Penggunaan Sistem Penurun Temperatur Air Pendingin Jenis Roda Pendingin Terhadap Konsumsi Bahan Bakar dan Laju Peningkatan Temperatur Motor Diesel Stasioner Fathur Rohman; Antok Yuliyanto; Tito Fadhil Attariq; Eko Surjadi
Jurnal Ilmiah Dan Karya Mahasiswa Vol. 1 No. 6 (2023): DESEMBER : JURNAL ILMIAH DAN KARYA MAHASISWA
Publisher : Institut Teknologi dan Bisnis (ITB) Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.54066/jikma.v1i6.1141

Abstract

In stationary diesel motors, the temperature reduction is carried out by cooling water and the temperature of the cooling water is lowered by environmental or natural air. This will be problematic if used in areas with relatively limited water supplies, where for stationary diesel motors of the above type, cooling water is always reduced and must be added. Throughout the operation. Apart from overcoming the problems above, the aim of this research is to obtain the most economical reduction in fuel consumption by using a system for reducing the temperature of the load wheel cooling water on stationary diesel motors. The research method uses the independent variable in the form of a load wheel with variations in the number of fins and variations in fin angle, the dependent variable is the rate of increase in heat and fuel consumption while the control variable is taken as room temperature during the test. The test results show that the greater the angle of the fin to the center line of the flywheel has an effect, where the greater the fin angle of the flywheel will cause the rate of increase in water temperature in the reservoir to be slower than the rate of increase in water temperature with a larger angle small, even though the effect is small, it results in a reduction in fuel use to an average 50% The conclusion obtained is that the use of a load wheel cooling water temperature reduction system on stationary diesel motors is better than the use of a standard (natural) cooling system. Almost the same as a radiator system.