PEMBUATAN MODEL FISIK DAN UJICOBA PENGGERAK POMPA PNEUMATIC SPRAYER BERTENAGA SURYA

Sprayer is a pest control device that serves to break up the liquid into small droplets and distribute evenly on the protected object. The pneumatic sprayer could be operated with battery charged previously by the solar cells which converts solar energy into electrical energy. The aim of research wa...

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Автори: , TRI BAYU COKROYOSO DIPURO NITI, , Dr. Bambang Purwanta, M.Agr
Формат: Дисертація
Опубліковано: [Yogyakarta] : Universitas Gadjah Mada 2014
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ETD
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author , TRI BAYU COKROYOSO DIPURO NITI
, Dr. Bambang Purwanta, M.Agr
author_facet , TRI BAYU COKROYOSO DIPURO NITI
, Dr. Bambang Purwanta, M.Agr
author_sort , TRI BAYU COKROYOSO DIPURO NITI
collection UGM
description Sprayer is a pest control device that serves to break up the liquid into small droplets and distribute evenly on the protected object. The pneumatic sprayer could be operated with battery charged previously by the solar cells which converts solar energy into electrical energy. The aim of research was utilizing renewable solar energy to control pests and deseases of plant. For the first step, a literature searching was done to obtain idea about physical design of pneumatic sprayer. The model of a pneumatic sprayer pump battery charging was constructed at the Energy and Machine Laboratory of the faculty. Data about electric current from solar cell, debit of spraying and solar intensity were gathered. Aproximate economics calculations of model operational cost was done. The results obtained are a model of sprayer with 10 wp solar cell and 12 V 7.2 Ah battery. A portable electric air pump with a working voltage of 12 V, the current range of 3-4 A and maximum working pressure of 17.5 bar. A pneumatic sprayer consist, tank with dimensions of 71 cm high and 22 cm diameter with capacity 11 liter water, 1 piece faucet, hose length of 116 cm , 78.5 cm stem length, and nozzle manifold with a solid cone nozzle jets. The performance testing indicated the higher the intensity of light received by the solar panels, the shorter will the charging time. The electrical current into battery can reach a value of 0.62 A and a voltage of 20.3 V. Debit from the nozzle at a pressure of 6-3kg/cm2 attain of 18-20 ml/s. The efficiency of battery charging maximum 13,14% for solar intensity 87600 Lux and 23,65 % for pump perfomance. The amount of annual operating cost was Rp 5.900.826,-. Operating costs Rp 19.669,- per hour or Rp 189.129 / ha
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spelling oai:generic.eprints.org:1295632016-03-04T08:15:24Z https://repository.ugm.ac.id/129563/ PEMBUATAN MODEL FISIK DAN UJICOBA PENGGERAK POMPA PNEUMATIC SPRAYER BERTENAGA SURYA , TRI BAYU COKROYOSO DIPURO NITI , Dr. Bambang Purwanta, M.Agr ETD Sprayer is a pest control device that serves to break up the liquid into small droplets and distribute evenly on the protected object. The pneumatic sprayer could be operated with battery charged previously by the solar cells which converts solar energy into electrical energy. The aim of research was utilizing renewable solar energy to control pests and deseases of plant. For the first step, a literature searching was done to obtain idea about physical design of pneumatic sprayer. The model of a pneumatic sprayer pump battery charging was constructed at the Energy and Machine Laboratory of the faculty. Data about electric current from solar cell, debit of spraying and solar intensity were gathered. Aproximate economics calculations of model operational cost was done. The results obtained are a model of sprayer with 10 wp solar cell and 12 V 7.2 Ah battery. A portable electric air pump with a working voltage of 12 V, the current range of 3-4 A and maximum working pressure of 17.5 bar. A pneumatic sprayer consist, tank with dimensions of 71 cm high and 22 cm diameter with capacity 11 liter water, 1 piece faucet, hose length of 116 cm , 78.5 cm stem length, and nozzle manifold with a solid cone nozzle jets. The performance testing indicated the higher the intensity of light received by the solar panels, the shorter will the charging time. The electrical current into battery can reach a value of 0.62 A and a voltage of 20.3 V. Debit from the nozzle at a pressure of 6-3kg/cm2 attain of 18-20 ml/s. The efficiency of battery charging maximum 13,14% for solar intensity 87600 Lux and 23,65 % for pump perfomance. The amount of annual operating cost was Rp 5.900.826,-. Operating costs Rp 19.669,- per hour or Rp 189.129 / ha [Yogyakarta] : Universitas Gadjah Mada 2014 Thesis NonPeerReviewed , TRI BAYU COKROYOSO DIPURO NITI and , Dr. Bambang Purwanta, M.Agr (2014) PEMBUATAN MODEL FISIK DAN UJICOBA PENGGERAK POMPA PNEUMATIC SPRAYER BERTENAGA SURYA. UNSPECIFIED thesis, UNSPECIFIED. http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=69955
spellingShingle ETD
, TRI BAYU COKROYOSO DIPURO NITI
, Dr. Bambang Purwanta, M.Agr
PEMBUATAN MODEL FISIK DAN UJICOBA PENGGERAK POMPA PNEUMATIC SPRAYER BERTENAGA SURYA
title PEMBUATAN MODEL FISIK DAN UJICOBA PENGGERAK POMPA PNEUMATIC SPRAYER BERTENAGA SURYA
title_full PEMBUATAN MODEL FISIK DAN UJICOBA PENGGERAK POMPA PNEUMATIC SPRAYER BERTENAGA SURYA
title_fullStr PEMBUATAN MODEL FISIK DAN UJICOBA PENGGERAK POMPA PNEUMATIC SPRAYER BERTENAGA SURYA
title_full_unstemmed PEMBUATAN MODEL FISIK DAN UJICOBA PENGGERAK POMPA PNEUMATIC SPRAYER BERTENAGA SURYA
title_short PEMBUATAN MODEL FISIK DAN UJICOBA PENGGERAK POMPA PNEUMATIC SPRAYER BERTENAGA SURYA
title_sort pembuatan model fisik dan ujicoba penggerak pompa pneumatic sprayer bertenaga surya
topic ETD
work_keys_str_mv AT tribayucokroyosodipuroniti pembuatanmodelfisikdanujicobapenggerakpompapneumaticsprayerbertenagasurya
AT drbambangpurwantamagr pembuatanmodelfisikdanujicobapenggerakpompapneumaticsprayerbertenagasurya