A digital instrument for measuring water flow was developed using an AT89S52 microcontroller, DS1302 real time clock (RTC), and EEPROM for an external memory. The sensor used for probing the current was a propeller that will rotate if immersed in a water flow. After rotating one rotation, the sensor sends one pulse and the number of pulses are counted for a certain time of counting. The measurement data, i.e. the number of pulses per unit time, are converted into water flow velocity (m/s) through a mathematical formula. The microcontroller counts the pulse sent by the sensor and the number of counted pulses are stored into the EEPROM memory. The time interval for counting is provided by the RTC and can be set by the operator. The instrument was tested under various time intervals ranging from 10 to 40 seconds and several standard propellers owned by Experimental Station for Hydraulic Structure and Geotechnics (BHGK), Research Institute for Water Resources (Pusair). Using the same propellers and water flows, it was shown that water flow velocities obtained from the developed digital instrument and those found by the provided analog one are almost similar.
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16 April 2015
THE 5TH ASIAN PHYSICS SYMPOSIUM (APS 2012)
10–12 July 2012
Bandung, Indonesia
Research Article|
April 16 2015
Development of microcontroller based water flow measurement Available to Purchase
Muhammad Miftahul Munir;
Muhammad Miftahul Munir
1Theoretical High Energy Physics and Instrumentation Research Division,
Institut Teknologi Bandung
, Jalan Ganesa No 10 Bandung 40132, Indonesia
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Arif Surachman;
Arif Surachman
2Physics of Electronic Materials Research Division, Faculty of Mathematics and Natural Sciences,
Institut Teknologi Bandung
, Jalan Ganesa No 10 Bandung 40132, Indonesia
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Indra Wahyudin Fathonah;
Indra Wahyudin Fathonah
2Physics of Electronic Materials Research Division, Faculty of Mathematics and Natural Sciences,
Institut Teknologi Bandung
, Jalan Ganesa No 10 Bandung 40132, Indonesia
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Muhammad Aziz Billah;
Muhammad Aziz Billah
2Physics of Electronic Materials Research Division, Faculty of Mathematics and Natural Sciences,
Institut Teknologi Bandung
, Jalan Ganesa No 10 Bandung 40132, Indonesia
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Khairurrijal;
Khairurrijal
2Physics of Electronic Materials Research Division, Faculty of Mathematics and Natural Sciences,
Institut Teknologi Bandung
, Jalan Ganesa No 10 Bandung 40132, Indonesia
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Hernawan Mahfudz;
Hernawan Mahfudz
3Water Resource Engineering Research Division, Faculty of Civil and Environmental Engineering,
Institut Teknologi Bandung
, Jalan Ganesa No 10 Bandung 40132, Indonesia
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Ririn Rimawan;
Ririn Rimawan
4Experimental Station for Hydraulic Structures and Geotechnics,
Research Institutes for Water Resources
, Ministry of Public Work, Jl. Ir. H. Juanda No. 193, Bandung, Indonesia
Email address: [email protected]
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Slamet Lestari
Slamet Lestari
4Experimental Station for Hydraulic Structures and Geotechnics,
Research Institutes for Water Resources
, Ministry of Public Work, Jl. Ir. H. Juanda No. 193, Bandung, Indonesia
Email address: [email protected]
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Muhammad Miftahul Munir
1
Arif Surachman
2
Indra Wahyudin Fathonah
2
Muhammad Aziz Billah
2
Khairurrijal
2
Hernawan Mahfudz
3
Ririn Rimawan
4
Slamet Lestari
4
1Theoretical High Energy Physics and Instrumentation Research Division,
Institut Teknologi Bandung
, Jalan Ganesa No 10 Bandung 40132, Indonesia
2Physics of Electronic Materials Research Division, Faculty of Mathematics and Natural Sciences,
Institut Teknologi Bandung
, Jalan Ganesa No 10 Bandung 40132, Indonesia
3Water Resource Engineering Research Division, Faculty of Civil and Environmental Engineering,
Institut Teknologi Bandung
, Jalan Ganesa No 10 Bandung 40132, Indonesia
4Experimental Station for Hydraulic Structures and Geotechnics,
Research Institutes for Water Resources
, Ministry of Public Work, Jl. Ir. H. Juanda No. 193, Bandung, Indonesia
Email address: [email protected]AIP Conf. Proc. 1656, 040007 (2015)
Citation
Muhammad Miftahul Munir, Arif Surachman, Indra Wahyudin Fathonah, Muhammad Aziz Billah, Khairurrijal, Hernawan Mahfudz, Ririn Rimawan, Slamet Lestari; Development of microcontroller based water flow measurement. AIP Conf. Proc. 16 April 2015; 1656 (1): 040007. https://doi.org/10.1063/1.4917114
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