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Konsep Desain Kopi Combre Untuk Industri Skala Mikro Saepuddin, Ahmad; Permadi, Luchyto Chandra; Adiwibowo, Priyo Heru; Kurniawan, Wahyu Dwi; Nurjannah, Ika; Drastiawati, Novi Sukma; Fitriani, Indah Martha; Yunitasari, Bellina; Hidayatullah, Rachmad Syarifudin
Riau Journal of Empowerment Vol 7 No 3 (2024)
Publisher : Lembaga Penelitian dan Pengabdian kepada Masyarakat Universitas Riau

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31258/raje.7.3.200-207

Abstract

One of the challenges faced by micro-businesses like Kopi Combre in the village of Sumberdem, Wonosari District, when they want to use packaging for their products is selecting packaging that is unique and appealing to consumers. The primary goal of this community engagement project is to provide guidance in designing packaging structures and labels suitable for the micro-scale industry, particularly for Kopi Combre. The method involves community engagement and incorporates literature studies and information analysis. This study covers aspects such as coffee product attributes, packaging structure design, and labels. The findings indicate that the most suitable packaging type for the micro-scale industry is the Pouch packaging, while the packaging and label design will feature dark colors and include information about the coffee product and a unique brand.
Perencanaan Panel Surya Sebagai Pengganti Listrik Alternatif Daerah Pesisir Lintas Selatan Desa Tumpak Pucung Sriwijaya, Bagus; Permadi, Luchyto Chandra; MEDITAMA, RATNA; Tjiptady, Bella Cornelia; Rohman, Mojibur; Darmawan, Kiki
Jurnal Pengabdian Kepada Masyarakat Vol 7 No 2 (2024): At-Tamkin - Jurnal Pengabdian Kepada Masyarakat
Publisher : Universitas Islam Raden Rahmat Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33379/attamkin.v7i2.6381

Abstract

Merencanakan Pembanngkit Listrik Tenaga Surya (PLTS) sebagai pengganti listrik alternatif daerah pesisir pantai selatan Desa Tumpak Pucung. Daerah tersebut daerah sangat minim akses penerangan disebabkan karena letek daerah jauh dari perkotaan sehingga untuk akses penerangan masih blm bias terdistribusi. Untuk merencanakan Pembanngkit Listrik Tenaga Surya (PLTS energi listrik alternative. Metode analisa, observasi lapangan, serta perencanaan alat dan komponen kemudian akan digunakan pada pengabdian. Pengabdian dilakukan di Desa Tumpak Pucung Malang. Besar daya listrik dibutuhkan penduduk mencakup rumah penduduk, fasilitas umum, penerangan jalan. Total kebutuhan komponen panel surya atau sollar panel dibutuhkan untuk membangkitkan energi sebesar 18.408 watt dibutuhkan panel surya dengan kapasitas 250 wp sebanyak ±10 unit. Diperlukan charge controller sebanyak satu unit dengan kapasitas 100 ampere. Total jumlah batree dan inverter dibutuhkan masing-masing sebanyak 12 unit batree dan 2 unit inverter
SOSIALISASI PENERAPAN AGROFORESTRY DI BAPEDA PACITAN SEBAGAI PEMENUHAN CO-FIRING PLTU Darmawan, Kiki; Permadi, Luchyto Chandra; Meditama, Ratna Fajarwati; Tjiptady, Bella Cornelia; Asshidiqi, Faisol Khoufi; Rohman, Mojibur; Zamzami, Muhammad Ana
BESIRU : Jurnal Pengabdian Masyarakat Vol. 2 No. 1 (2025): BESIRU : Jurnal Pengabdian Masyarakat, Januari 2025
Publisher : Lembaga Pendidikan dan Penelitian Manggala Institute

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.62335/7xpcs148

Abstract

Paris Agreement merupakan kesepakatan global yang monumental untuk menghadapi perubahan iklim, salah satu upaya menurukan iklim global melalui co-firing, co-firing merupakan program percepatan pengurangan emisi pada PLTU di seluruh Indonesia, dengan biomassa sebagai subtitusi batubara, dalam pelaksaan program co-firirng terdapat kendala stok biomassa di PLTU Pacitan, dari permasalahan kebutuhan stok biomassa memerlukan kerjasama dengan pihak BAPEDA pacitan.Sosialisasi penerapan lahan biomassa sebagai bahan bakar PLTU dengan menerapkan sistem pertanaman lorongĀ  dengan penggunaan 5% dari luas hutan rakyat mengahsilkan 194.320 ton biomassa dengan nilai keekonomian Rp 389.210.323.370,40, dari sosislisasi ini dapat menaikan perekonomian Pacitan.
Analysis of Groundstrap Installation on Fuel Consumption Efficiency and Exhaust Gas Emissions on Motorcycles Mudrikah, Mudrikah; Permadi, Luchyto Chandra; Arifin, Muhammad; Primadiarta, Ari Sam; Bambang Widjanarko, Bambang Widjanarko; Djarot Winoto, Djarot Winoto; Zubdatu Zahrati, Zubdatu Zahrati; Kusyairi, Imam
International Journal of Sustainable English Language, Education, and Science Vol. 1 No. 2 (2024)
Publisher : Universitas Kristen Cipta Wacana

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.71131/j991mf52

Abstract

Efforts to improve performance on the system ignition motorbike already Lots done, one of them Can done with installation Groundstrap on cable spark plug For as cable grounding spark plugs for voltage fire from coil will focus going to spark plugs. Research This use method study descriptive For know difference use Groundstrap ( Groundstrap Aluminum and Copper ) against characteristics voltage cable spark plug. Testing done as much as three trials, 4000 Rpm, 6000 Rpm, and 8000 Rpm. Data analysis techniques using descriptive statistics For knowing the average and percentage the changes. Based on results analysis of research data that has been discussed in the section previously, can withdrawn conclusion with use Groundstrap Copper capable reducing CO exhaust gas by -3.58% reduction. while Groundstrap Aluminum experience increase in CO exhaust gas by 4.48 %. Likewise with HC exhaust gas, Groundstrap Copper capable reducing HC exhaust gas by -4.63 %. While Groundstrap Aluminum experience increase in HC exhaust gas by 6.66%. So it can be concluded the more the good thing is system ignition on a vehicle so will the more low exhaust emissions released. On consumption material burn Groundstrap Copper capable lower consumption material fuel consumption on motorbikes decreased by -6.1%. Meanwhile, Groundstrap Aluminum consumption material burn become increase by 1.53%.
Structural Analysis of Compressor Connecting Rod Using Finite Element Simulation in SolidWork Permadi, Luchyto Chandra; Tjiptady, Bella Cornelia; Meditama, Ratna Fajarwati; Darmawan, Kiki; Rohman, Mojibur; Asshadiqi, Faisol Khoufi; Pradhana, Candra
G-Tech: Jurnal Teknologi Terapan Vol 9 No 3 (2025): G-Tech, Vol. 9 No. 3 July 2025
Publisher : Universitas Islam Raden Rahmat, Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70609/g-tech.v9i3.7504

Abstract

The connecting rod in a compressor plays a critical role in transmitting the reciprocating motion from the piston to the crankshaft, making it a vital component that is constantly subjected to cyclic loads and stresses. This study aims to evaluate the structural strength and reliability of a compressor connecting rod by utilizing Finite Element Analysis (FEA) through SolidWorks Simulation software. The connecting rod was modeled with realistic geometric dimensions and material properties commonly used in household refrigerator compressors, such as aluminum alloys or medium-carbon steel. The simulation was performed by applying realistic boundary conditions, including compressive forces, reaction loads from the crankshaft, and constraints reflecting actual operational conditions. The results of the finite element simulation provided insights into the stress distribution, deformation patterns, and safety factors of the connecting rod under various load conditions. The maximum von Mises stress was identified in the transition area between the rod and the crank pin, which is consistent with typical failure points found in previous studies. From the analysis, it was concluded that the existing design provides an acceptable safety factor under normal working conditions, but optimizations in material thickness and fillet radius at critical regions could further enhance durability and reduce the risk of fatigue failure. This study highlights the importance of structural analysis in improving the reliability and longevity of compressor components through simulation-based design validation.