Claim Missing Document
Check
Articles

Found 2 Documents
Search

SISTEM TRACKING GPS MILK RUN SUPPLY PACKAGING BERBASIS WEBSITE STUDI KASUS PADA PT XYZ Muhammad Gufril Firdaus; Winanti Winanti; Riyanto; Jumiran; Beby Tiara; Sri Lestari
IPSIKOM Vol. 13 No. 1 (2025): Jurnal Ipsikom
Publisher : LPPM UNIVERSITAS INSAN PEMBANGUNAN INDONESIA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58217/ipsikom.v13i1.415

Abstract

Efisiensi distribusi merupakan tantangan penting dalam rantai pasok modern, terutama di sektor manufaktur. PT XYZ menghadapi kendala dalam penerapan sistem milk run untuk distribusi bahan kemasan, seperti kurangnya pengawasan real-time dan keterlambatan pengiriman. Hal ini berdampak pada kelancaran proses produksi dan peningkatan biaya operasional. Penelitian ini bertujuan untuk merancang sistem pelacakan berbasis website yang menggunakan teknologi GPS guna memantau pengiriman secara real-time. Sistem ini dirancang untuk memberikan visibilitas penuh terhadap proses distribusi, mengurangi kesalahan manusia, dan meningkatkan transparansi operasional. Metode pengembangan menggunakan pendekatan System Development Life Cycle (SDLC), meliputi analisis kebutuhan, desain, implementasi, dan pengujian dengan metode black box. Sistem ini dibuat dengan bahasa pemrograman PHP dan database MYSQL. Hasil penelitian menunjukkan bahwa sistem ini mampu meningkatkan efektivitas monitoring pengiriman, memberikan laporan otomatis, dan mempermudah pengelolaan data logistik secara digital. Dengan adanya sistem ini, proses distribusi menjadi lebih terorganisir, transparan, dan selaras dengan kebutuhan produksi.
Identifikasi dan Diagnosis Kinerja Pompa Diafragma Wilden P200 Berbasis Computational Fluid Dynamics Menggunakan Solidworks Tb. Ade Rahmatullah; Gurruh Dwi Septano; Tika Kristianti; Nasaruddin; Riyanto
Jurnal Teknik dan Science Vol. 5 No. 1 (2026): Februari : Jurnal Teknik dan Science
Publisher : Asosiasi Dosen Muda Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.56127/jts.v5i1.2511

Abstract

The Wilden P200 diaphragm pump is a critical component in fluid transfer systems; therefore, the stability of its performance has a direct impact on operational efficiency. In actual operating conditions, a significant reduction in the actual flow rate compared to the theoretical flow rate was identified, indicating performance degradation as well as potential non-compliance of the installation with the manufacturer’s recommended standards. This study was conducted using an inspection and fault diagnosis approach to systematically identify the root causes of the problem. The methodology included visual and functional inspection of components, observation of the piping installation, measurement of operating parameters, and performance analysis based on a comparison between actual and theoretical flow rates. The evaluation involved flow rate testing, volumetric efficiency assessment, and inspection of supporting components such as filters, check valves, and piping. The initial inspection results indicated the presence of flow restrictions, increased pressure losses, and a reduced capability of the pump to transfer fluid efficiently. To support the diagnostic process, Computational Fluid Dynamics (CFD) simulations were employed to visualize the pressure distribution, flow patterns, and potential pressure losses within the pump and piping system. The simulation results revealed high-pressure zones, flow constrictions, and significant pressure gradients, which were consistent with field observations, such as malfunctioning filters and sediment accumulation within the piping. Based on the combined results of field inspections and CFD analysis, it can be concluded that the performance degradation of the Wilden P200 pump is caused by a combination of component wear, filter malfunction, and the absence of routine inspection and maintenance procedures. These conditions lead to increased flow resistance and pressure losses, directly resulting in a reduction in the pump’s actual flow rate. The findings of this study are expected to serve as a basis for system improvements and the development of more effective maintenance strategies to prevent similar failures in future operations