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KAJIAN POTENSI ARUS SUNGAI LAGAN DI DESA LAGAN TENGAH KAB. TANJAB TIMUR SEBAGAI PEMBANGKIT LISTRIK Myson Myson
Jurnal Ilmiah Universitas Batanghari Jambi Vol 13, No 4 (2013): November
Publisher : Universitas Batanghari Jambi

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (438.323 KB) | DOI: 10.33087/jiubj.v13i4.339

Abstract

Lagan village Tengan Eastern District Geragai Tanjab District is one of the village is still experiencing problems in meeting the electricity needs for the community, but the middle of the village crossed by the river lagan lagan.River is a river lagan adequate when used as a power plant to meet the needs of rural communities. Based on the observations and calculations is known that power can be generated by current and discharge sengai amounted to 4821 watts.Key word:  The river lagan, Tanjab East Electricity, Power Flow
DESIGN ALAT REKAYASA ARUS PEMBANGKIT LISTRIK TENAGA ARUS SUNGAI LAGAN DI DESA LAGAN TENGAN KABUPATEN TANJUNG JABUNG TIMUR Myson Myson
Jurnal Ilmiah Universitas Batanghari Jambi Vol 14, No 4 (2014): Desember
Publisher : Universitas Batanghari Jambi

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (228.666 KB) | DOI: 10.33087/jiubj.v14i4.238

Abstract

Need of the Indonesia people kept rising, while supply energy electricity the goverment is very limited. As we know that country has various sorts of the type renewebel energy. For those it shall meet the needs of innovations in energy. River lagan in the catch of the middle lagan village have smoll flow but with innovation engineering, river flow can be to meet the need of the village.Key word : River flow , renewebel energy, water turbin
KAJIAN POTENSI ARUS SUNGAI PENGABUAN DI KECAMATAN TUNGKAL ILIR KAB. TANJAB BARAT SEBAGAI PEMBANGKIT ENERGI UNTUK LISTRIK Myson Myson
Jurnal Ilmiah Universitas Batanghari Jambi Vol 15, No 3 (2015): Oktober
Publisher : Universitas Batanghari Jambi

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (193.02 KB) | DOI: 10.33087/jiubj.v15i3.158

Abstract

The pengabuan River in the Regency Tanjung Jabung Barat is a source of energy that can be harnessed for the life of the local community. Moreover, that particular 1957 city of Kuala Tanjung Jabung District as the capital of the West is currently experiencing a deficit of electrical energy. Whereas the potential energy is very much owned electricity, there are sourced from gas, wind, the Sun and the current of the river. To be able to memanfaatkanya need to have data on the potential of how much kinetic energy that can be raised. For it it is necessary konprehensip in order that the research data obtained later really approaching reality.In this study performed a calculation of potential stream pengabuan to be utilized as a power plant. The main data that is needed is to get the speed of water flow of the river pengabuan and then calculate the flow of discharge.From the implementation of the field conducted as many as 5 times at one point captured, obtained that the speed of the average flow of the river is m/dt 0.31, flow and discharge of 1.1625 m3/dt with a vast field of capture 3, 75m2. Using the formula kinetic energy, then obtained that for broad areas of capture point 3.75 m2 obtained energy of 55.85 joule/dt. It can be inferred that the river flow pengabuan the transverse pieces per square meter of river can evoke the kinetic energy of joule/dt 14.89 or 14.89 Watts.Key word: stream pengabuan Kuala 1957
DESAIN PEMBANGKIT LISTRIK TENAGA SURYA PADA DAERAH PESISIR KUALA TUNGKAL TANJAB BARAT Myson Myson
Jurnal Civronlit Unbari Vol 1, No 1 (2016): Oktober
Publisher : Universitas Batanghari

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (138.274 KB) | DOI: 10.33087/civronlit.v1i1.9

Abstract

AbstrakEnergi surya (matahari) merupakan salah satu sumber energi terbarukan yang paling penting dan sangat berlimpah di Indonesia. Dengan potensinya yang sangat besar tersebut, energi surya diyakini menjadi sumber energi utama di masa depan. Eenergi surya di Indonesia sangatlah besar. Indonesia memiliki sekitar 4.8 KWh/m2 atau setara dengan 112.000 GWp energi surya. Sayangnya energi surya ini belum mendapatkan porsi yang semestinya di negara ini. Dari total potensi energi surya tersebut, Indonesia baru memanfaatkan sekitar 10 MWp. Hambatan yang masih sering terjadi pada penggunaan PLTS ini adalah pada tidak dapatnya diprediksi keacaan cuaca dalam waktu yang singkat, sehingga produksi energi listrik sulit dapat memenuhi target yang diharapkan, dan hal ini membuat ketidak nyamanan pengguna. Perlunya penelitian terhadap efisiensi modul solar panel, karena saat ini efisiensi yang dihasilkan modul solar panel masih sangat rendah, sehingga untuk mendapatkan 1 KWh energi listrik masih tergolong sangat mahal.Abstract Solar energy (sunlight) is one of the renewable energy sources the most important and very abundant in Indonesia. With such huge potential, solar energy is believed to be the main energy source in the future. Solar Eenergi in Indonesia is very large. Indonesia has around 4.8 KWh / m2 or equivalent to 112,000 GWp of solar energy. Unfortunately, solar energy has not received the proper portion of the country. Of the total solar energy potential, Indonesia has only utilized approximately 10 MWp. Barriers are still common in the use of solar power is at the inability to predict the weather keacaan in a short time, so the production of electrical energy is difficult to meet the expected targets, and this makes it an inconvenience for the user. The need for research on the efficiency of solar panel modules, because the current efficiency of the resulting solar panel module is still very low, so to get 1 kWh of electrical energy is still relatively very expensive.
PENGARUH INJEKSI AIR DAN PENGATURAN DERAJAT PENGAPIAN TERHADAP PENURUNAN KONSUMSI BAHAN BAKAR MESIN SEPEDA MOTOR Myson Myson
Jurnal Civronlit Unbari Vol 2, No 1 (2017): April
Publisher : Universitas Batanghari

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (690.948 KB) | DOI: 10.33087/civronlit.v2i1.14

Abstract

Water injection is a hydraulic technique of injecting water into the combustion chamber with the purpose to decrease the amount of fuel sipped by pistons during the expansion, and replaced it with water directly injected to combustion chamber. This water injection process also reduce temperature in combustion chamber . Besides degree of ignition is having a significant effect on quality of combustion earning. Angle of earlier ignition will cause increase of combustion pressure speed, which in turn makes pressure result of combustion in excelsior cylinder. But if degree of ignition in backs into,  hence time required by fuel for combustible become smaller and fuel can be combustible at outlet. Result from test conducted by moving forward degree of ignition and water injection done at honda mega- pro and honda supra fit showed that efficiency of engine can be improved. For motorbike Honda Mega- Pro result showed improved of specific fuel consumtion to torsion equal to 47,82% with treatment of water injection mixed with alcohol with ratio 60:40 at degree of ignition moved forward by 3 degree of at burden 1 KW (Kilo Watt). For Honda Supra Fit improved of specific fuel consumtion to torsion 25,14 % at treatment of water injection mixed with by alcohol at ratio 80:20 with degree of ignition is moved forward 5 degree of at burden 1 KW.Keyword : Water injection, degree of ignition, improved efficiency, motorcycle engine
Peluang Efisiensi Penggunaan Energi pada Sektor Perhotelan di Kota Jambi Myson Myson
Jurnal Civronlit Unbari Vol 3, No 1 (2018): April
Publisher : Universitas Batanghari

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (484.255 KB) | DOI: 10.33087/civronlit.v3i1.30

Abstract

In the RPJMN 2015-2019 the government sets a target of 20 million foreign tourists by 2019. The hotel sector contributes to national energy use of 3%. The hospitality sector is growing at a 12.5% growth rate from 2007 to 2011, in response to an increase in the number of tourists between 9-13% including in Jambi at that time. To evaluate the use of electric energy at the hotel it is necessary to conduct an analysis of energy costs per hotel room sold to give an average picture of energy costs. From the calculation, it is found that the intensity of energy consumption in one of the hotel rooms in jambi city is 5.93 kWh / m2.Key words: Energy, energy conservation, hotel