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Perbandingan Aplikasi Rotor Tunggal dan Ganda terhadap Performa Turbin Air Tipe Propeller pada Saluran air Debit Rendah Miftahul Ulum; Michael Azzura Akbar; M Arif; Saif Muizzadin Wadaullah
Prosiding SENASTITAN: Seminar Nasional Teknologi Industri Berkelanjutan Prosiding SENASTITAN Vol. 02 2022
Publisher : Institut Teknologi Adhi Tama Surabaya

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Abstract

The propeller turbine is a water turbine that is suitable for use at low heads such as irrigation canals and rivers. Hydrokinetic energy development is the most feasible option in Indonesia. However, currently the development of hydrokinetic energy in Indonesia is still very low. The propeller turbine is a water turbine which is suitable for use at low heads. This turbine is classified as a microhyro and has a head between 1-5 m. This study was conducted to compare the effect of using a double rotor on a propeller turbine. Changes in turbine performance were reviewed through the rotational speed of the rotor, torque, mechanical power and turbine electrical voltage. This research was conducted experimentally in a closed-loop test section. A pump drives fluid flowing in the closed-loop test section at flow rates of 0.05, 0.1 and 0.15 liter/s. the use of a double propeller turbine results in an increase in turbine performance above 5%. This is because turbines with double rotors have a large cross-sectional area compared to single-rotor turbines. Thus the energy contained in the fluid can be transmitted optimally to drive the turbine surface with a double rotor.Keyword: Turbin Propeller, Double rotor, microhydro
Perancangan dan Analisa Sistem Perpipaan Pompa Sertifugal P.100/15 pada Unit Kilang Cepu Indra Adi Gunawan; M arif; Donny Albari; Zain Lillahulhaq; Syamsuri Syamsuri; Anindya Rachma Dwicahyani
Prosiding SENASTITAN: Seminar Nasional Teknologi Industri Berkelanjutan Prosiding SENASTITAN Vol. 01 2021
Publisher : Institut Teknologi Adhi Tama Surabaya

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Abstract

A centrifugal pump is a pump that works on the principle of increasing fluid pressure by increasing speed through centrifugal force. The application of pumps is mostly carried out in the industrial sector to deliver fuel, air and other multi-phase fluids. The design of the pump must be adjusted to the layout of the piping system through which the fluid flows and consider the height of the pipe at the pump. In this research, the design and analysis of the piping system on the P.100/15 Sertifugal Pumps at the Cepu Refinery Unit was carried out. This research involved the mayor and minor losses in the piping system. In addition, the calculation of power in the piping system is also carried out. From the calculations made, the total head is 17.403 m with a pump power of 1.7 kW.