Jurnal Polimesin
Vol 24, No 3 (2026): June

Performance and emission analysis of a Komatsu PC195LC common-rail diesel engine under injector type and spray-angle variations

Yosephus Ardean Kurnianto Prayitno (Sekolah Vokasi, Universitas Gadjah Mada)
Sugiyanto Sugiyanto (Sekolah Vokasi, Universitas Gadjah Mada)
Ilham Ayu Putri Pratiwi (Sekolah Vokasi, Universitas Gadjah Mada)
Braam Delfian Prihadianto (Sekolah Vokasi, Universitas Gadjah Mada)
Muhammad Fauzan (Sekolah Vokasi, Universitas Gadjah Mada)
Setyawan Adi Nugraha (Sekolah Vokasi, Universitas Gadjah Mada)
Josua Aditya Manuel (PT. United Tractors, Tbk., Semarang Branch.)
Sutikno Sutikno (PT. United Tractors, Tbk, Semarang, Indonesia)
Muhammad Novan Budi Prasetya (PT. United Tractors, Tbk., Semarang Branch.)



Article Info

Publish Date
30 Jun 2026

Abstract

Injector condition and spray characteristics strongly influence fuel atomization, combustion efficiency, and exhaust emissions in common-rail diesel engines. This study aims to evaluate the performance and emission responses of a Komatsu PC195LC diesel engine under variations in injector type and spray angle by integrating field measurements with bench-scale spray characterization. Two injector types (OEM vs local) were tested at 1050, 1500, and 2050 rpm; fuel rate and specific fuel consumption were logged over two-minute windows, and post-operation (3000 h) inspections assessed wear. A back-lit imaging rig measured spray angle and droplet distribution at 50 and 100 bar; a simple mixing–atomization model linked spray metrics to air–fuel preparation. Field results show the OEM injector reduced fuel rate by 0.78 L/h (3.45%) versus the local unit under the duty cycle tested. Bench data indicate wider spray angles and finer droplets at higher pressure, consistent with improved mixture formation. Joint analysis attributes the observed SFC gains to healthier nozzle geometry and spray targeting. The study provides guidance on injector selection, condition monitoring, and pressure/angle calibration towards Euro-4-aligned efficiency and emissions.

Copyrights © 2026






Journal Info

Abbrev

polimesin

Publisher

Subject

Automotive Engineering Control & Systems Engineering Engineering Materials Science & Nanotechnology Mechanical Engineering

Description

Polimesin mostly publishes studies in the core areas of mechanical engineering, such as energy conversion, machine and mechanism design, and manufacturing technology. As science and technology develop rapidly in combination with other disciplines such as electrical, Polimesin also adapts to new ...