cover
Contact Name
Fazri
Contact Email
jurutera@unsam.ac.id
Phone
+6285261571533
Journal Mail Official
fazri@unsam.ac.id
Editorial Address
Jln. Prof. Dr. Syarif Thayeb, Meurandeh, Kota Langsa, Aceh, 24416
Location
Kota langsa,
Aceh
INDONESIA
JURUTERA (Jurnal Umum Teknik Terapan)
Published by Universitas Samudra
Core Subject : Engineering,
Jurnal Ilmiah Jurutera menerbitkan dalam berbagai topik dalam bidang rekayasa dan sains yang dapat dikategorikan kedalam tema-tema berikut: - Teknik Elektro dan Informatika - Teknik Geologi dan Pertambangan - Teknik Arsitektur dan Perencanaan Wilayah dan Kota - Teknik Mesin dan Industri - Teknik Sipil dan Lingkungan - Teknik Perkapalan, Sistem Perkapalan, dan Kelautan - Multidisiplin
Articles 5 Documents
Search results for , issue "Vol 8 No 02 (2021)" : 5 Documents clear
Aplikasi Informasi Kegiatan Webinar Berbasis WEB Rani Khairani; Izzhan Hawary; Nida Nafila; Isra Prastiana Yannas; Khairinnisah; Syaila Fannisa; Munawir
JURUTERA - Jurnal Umum Teknik Terapan Vol 8 No 02 (2021)
Publisher : Fakultas Teknik Universitas Samudra

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55377/jurutera.v8i02.4944

Abstract

Webinars are inseparable activities from the world of education in higher education. However, there are still many webinars that hold conventionally starting from the announcement of the event, registration of participants, to the process of implementing the event. So that it feels less effective. Therefore, this application was created to make it easier to provide information to all students about the latest webinar in the University so that publications can be effective and efficient, this design can help solve problems that occur when webinars are held, such as attendance, information about presenters and others. The research method used in designing this web-based application is a field study, namely by direct observation, interviews with related parties, and also by conducting documentation to obtain the required information. In addition, the author also conducted various discussions as well as from various media containing the information needed, analyzing needs, and designing. The second stage is to build the system using the Waterfall type SDLC (System Development Life Cycle) method. The Waterfall Model provides a sequential or sequential software lifecycle approach starting from analysis, design, coding, testing, and maintenance.
Rekaya Mesin Konversi Sampah Plastik Menjadi Minyak Mentah Dengan Variasi Sampah Plastik Jenis Polypropilena (PP) dan Polyethylene Therephtalate (PET) Iqbal Fahrurazy; Iskandar; Nazaruddin
JURUTERA - Jurnal Umum Teknik Terapan Vol 8 No 02 (2021)
Publisher : Fakultas Teknik Universitas Samudra

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55377/jurutera.v8i02.5293

Abstract

Penggunaan plastik yang semakin meningkat setiap tahunnya. Memberikan dampak yang sangat besar. meningkatnya penggunaan plastik adalah hasil dari perkembangan teknologi, industri dan demografis. Plastik ini terlalu banyak sehingga menyebabkan timbunan sampah dimana mana. Masalah sampah ini erat kaitannya dengan pertumbuhan penduduk, pertumbuhan ekonomi, dan perubahan pola konsumsi masyarakat. Berdasarkan data tahun 2016 dari Kementerian Lingkungan Hidup dan Kehutanan (KLHK), volume pembuangan sampah tahunan Indonesia mencapai 65,2 juta ton. Jika tidak dicari solusi, peningkatan sampah plastik ini akan menjadi masalah serius. Metode pembuangan sampah plastik yang populer saat ini adalah (Reuse, Reduce, Recycle). Reuse adalah cara membuang sampah dengan menggunakan kembali barang berjenis plastik yang sudah terpakai. Reduce adalah mengurangi penggunaan barang yang berpotensi akan menjadi sampah plastik. Recycle adalah mendaur ulang produk plastik. Alternatif lain dari pengelolaan sampah plastik yang diteliti dan dikembangkan adalah konversi sampah plastik menjadi minyak mentah dengan metode pirolisis. Metode pirolisis pada sampah plastik merupakan proses dekomposisi senyawa organik melalui proses pemanasan dengan sedikit atau tanpa melibatkan oksigen. Tujuan dari penelitian ini adalah Membuat mesin konversi sampah plastik menjadi minyak mentah dengan bentuk yang sederhana. terdapat dua jenis plastik yang akan dilakukan pengujian yaitu plastik polipropilena (PP) dan plastik polietilena tereftalat (PET). Pada pengujian plastik polietilena tereftalat (PET) dengan berat plastik 1 kg selama 240 menit menghasilkan 22,5 ml minyak mentah dan Pengujian plastik polipropilena (PP) dengan berat plastik 1 kg selama 240 menit menghasilkan 110 ml minyak mentah.
Analisis Pengendalian Mutu Dry Rubber Content (DRC) Menggunakan Metode Peta Control Chart di PT. SEMADAM Ryan Pramanda; Wiky Sabardi; Dewiyana
JURUTERA - Jurnal Umum Teknik Terapan Vol 8 No 02 (2021)
Publisher : Fakultas Teknik Universitas Samudra

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55377/jurutera.v8i02.5486

Abstract

Dry Rubber Content (DRC) is used as a standard for production materials at PT Seumadam. Inaccurate DRC data may affect product quality. Determining the quality of DRC products aims to analyze quality standards to obtain the right, accurate, effective, and applicable method for use in the rubber sheet production process. Large plantations determined that DRC was not following the standard and only based on manual dry weight deviation of rubber. Determination of the quality of dry rubber that needs to be tested and adjusted to the needs of the rubber sheet industry so that the determination of the value of dry rubber content can be carried out effectively and accurately.
Program dan Biaya Reklamasi Untuk Jaminan Reklamasi Berdasarkan KEPMEN ESDM No. 1827 Tahun 2018 di PT. TRI ABADI MINERAL (TAM) Supardi
JURUTERA - Jurnal Umum Teknik Terapan Vol 8 No 02 (2021)
Publisher : Fakultas Teknik Universitas Samudra

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55377/jurutera.v8i02.5495

Abstract

Indonesia is a country that has natural resources (SDA). Mining materials are non-renewable natural resources. Mining materials include stone sand, silver, gold, copper, natural gas, and oil. Manokwari Regency is an area that has abundant natural resources. The company's mining activities have provided a reasonably comprehensive source of income for the regions in the last few decades. Mining has also triggered environmental problems that are closely related to land degradation. To overcome environmental problems from mining activities, it is necessary to the reclamation of ex-mining land. This paper aims to obtain a reclamation program, determine the form of revegetation, and obtain a direct and indirect cost budget at PT TAM. The mining area is carried out with an area of 9.1 Ha consisting of an area around the mine along ± 1.86 Km and supporting facilities with an area of 2.05 Ha such as workshops, offices, housing, and a stone crusher. Moreover, the rest is the mining area. The Reclamation activity program is carried out at mine sites, mining roads, and supporting facilities, with the reclamation technique carried out starting from the arrangement of the land surface, making drainage, sedimented pond, and revegetation. Revegetation is carried out in 3 stages. Among others, the first stage is planting cover crops. The second stage is planting the main crop and maintenance. The amount of reclamation guarantee must be paid by PT. Tri Abadi Mineral (TAM) is Rp. 101.260.125,-.
Perancangan Efisiensi Lintasan Produksi dengan Menggunakan Metode Helgeson-Birnie (Ranked Positional Weight) Untuk Meningkatkan Kapasitas Produksi (Studi Kasus Pada Unit Produksi I Shift I PT. SUMBETRI MEGAH) Wiky Sabardi; Ryan Pramanda; Dewiyana; Diki Suhanda
JURUTERA - Jurnal Umum Teknik Terapan Vol 8 No 02 (2021)
Publisher : Fakultas Teknik Universitas Samudra

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55377/jurutera.v8i02.5534

Abstract

The problem of line balancing in industry, assembling, and manufacturing often occurs. This is indicated by a relatively high bottleneck of work in process at several stations, resulting in non-optimal line efficiency and non-smooth process flow. This study aims to calculate line balancing and determine the division of work stations that can increase production capacity in the production unit I shift I pt. Magnificent resource. This study used the Helgeson-Birnie (Ranked Positional Weight) method. From this research, the design results were obtained with line efficiency (line efficiency) 89.16%, idle time 2730.85, balance delay 10.84%, smoothness index (smoothness index) 781.24, and the number of work stations 15. Based on the calculation, it can be seen that there is an increase in line efficiency from 74.46% to 89.35%, which is 14.89%.

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