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PMID: 41285967 Published · epublish English Journal Article

Design optimization and experimental validation of a biogas-powered stove for energy efficiency in injera baking in rural Ethiopia.

Scientific reports ·Vol. 15 ·No. 1 ·2025-11-24 ·页码 41479

Syum GG, Gebrselassie MG, Kanti PK, Kumara PCA, Hamida MBB, Chandra HSS

Abstract

Injera baking is an energy-intensive daily activity in most Ethiopian households, traditionally reliant on firewood or grid electricity. Biogas presents a cleaner, more sustainable alternative, yet its application for injera baking remains limited due to excessive fuel consumption, uneven heat distribution, and inefficient stove designs. This study addresses these challenges by developing and validating a purpose-built biogas-powered injera stove. A novel burner configuration was designed, comprising five concentric feeding loops with a total of 93 carefully sized holes, and incorporating 20 mm fiberglass insulation to minimize heat loss. Unlike earlier general-purpose biogas stoves, this system was specifically engineered to meet the unique thermal and geometric requirements of injera baking. Computational Fluid Dynamics (CFD) simulations were conducted to optimize biogas flow and flame characteristics, revealing a maximum flame temperature of 1954 K with uniform distribution post-deflection by the baking pan. Experimental validation confirmed the simulation results, achieving a flame height of 33 mm and a diameter of 45 mm. The improved stove heated an 18 mm aluminum pan to 140 °C in under 10 min at a biogas consumption rate of 0.9 m3. The system achieved an efficiency of 43.11%, significantly higher than conventional designs as indicated in Table 3. This integrated design-simulation-validation approach demonstrates the technical feasibility of efficient, biogas-based injera baking for rural Ethiopian households.

Keywords
Biogas CFD simulation Energy efficiency Experimental validation Flame uniformity Injera stove Rural cooking technology
作者与单位
共 6 位作者,点击展开单位 / ORCID
Syum Gabr Goshu ORCID
Centre of Studies in Oil and Gas Engineering and Technology (CS- OGET), Eduardo Mondlane University, Av. de Moçambique, Km 1.5, Bairro Luís Cabral, Maputo, 257, Mozambique. [email protected]. | EiT-M, Mekelle University, P. O. Box 231, 7000, Mekelle, Tigray, Ethiopia. [email protected].
Gebrselassie Mulualem G
School of Engineering and Built Environment, Sheffield Hallam University, Sheffield, UK.
Kanti Praveen Kumar
Department of Mechanical Engineering, Rayat Bahra Institute of Engineering and Nano Technology, Hoshiarpur, Punjab, India.
Kumara P C Aruna
Faculty, Department of Mechanical Engineering, Ramaiah Institute of Technology, Bengaluru, India.
Hamida Mohamed Bechir Ben
Deanship of Scientific Research, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh, Saudi Arabia.
Chandra H S Sharath
Department of Mechanical Engineering, NMAM Institute of Technology, Affiliated to NITTE (Deemed to be University), Karnataka, 574110, India.
Article Info
Journal
Scientific reports
Abbr.
Sci Rep
ISSN
2045-2322
Corresponding email
Published
2025-11-24
电子出版
2025-00-24
页码
41479
Language
English
Country/Region
England
NLM ID
101563288
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