Effect of Geometric Eccentricity on Heat Transfer, Puffing Behaviour and Quality Attributes of Chapati
Shalini Mishra, Mohan Singh, Shaswat Tiwari
Advances in Research · pp. 262–273 · Published 13 Apr 2026
10.9734/air/2026/v27i21620Abstract
Unlike manual rolling, mechanical systems are more susceptible to systematic geometric errors arising from roller misalignment, feed mechanisms, and process parameters. Therefore, understanding the effect of controlled variations in eccentricity on chapati quality is essential for optimizing machine design and defining acceptable limits of geometric deviation in automated production. This study aimed to investigate the effect of geometric eccentricity on thermal distribution, puffing behavior, moisture dynamics, structural uniformity, and overall quality of chapati, and to establish its importance as a key parameter in rolling and baking processes. The study was conducted as an experimental investigation in the Food Engineering/Processing Laboratory, Jawaharlal Nehru Krishi Vishwavidyalaya. Chapati samples were prepared using whole wheat flour dough with a moisture content of 40–42%, and varying levels of eccentricity (e = 0.00–0.50) were introduced through controlled rolling techniques using manual and semi-mechanical methods. Eccentricity was calculated based on the geometric relation of an ellipse. Physical parameters such as major and minor axes, thickness distribution, and uniformity were measured using a digital vernier caliper. Puffing behaviour was evaluated through puffing height and puffing index, while moisture content was determined using the standard oven drying method at 105°C. Thermal characteristics, including surface temperature and temperature differences, were recorded during baking. Quality indices such as puffing uniformity, steam retention, moisture uniformity, browning index, and internal structure were also assessed, along with sensory evaluation by a semi-trained panel. The results indicated that increasing eccentricity significantly affected all quality parameters. Thickness variation increased from ±0.05 mm to ±0.55 mm, while puffing extent decreased from 98% to 10%. Puffing uniformity index declined from 0.95 to 0.15, and steam retention index from 0.96 to 0.12. Moisture loss rate increased from 1.20 to 1.55 g/min, and temperature difference rose from 2°C to 35°C. Moisture uniformity and browning indices also decreased substantially. It was concluded that eccentricity plays a critical role in determining chapati quality, and maintaining low eccentricity is essential for achieving uniform cooking, optimal puffing, and improved overall acceptability.
Cited by 0
No indexed citations yet.
Related research
- Aflatoxins Investigation and Mycobiota of Selected Marketed Smoked - Dried Fish Samples in Ado-Ekiti, Nigeria and Their Environmental Health Implications — shares topic coverage
- Development of Functional Condensed Milk from Coconut Milk and Soy Milk — shares topic coverage
- Determination of the Moisture and Mineral Contents in Selected Infant Flour Sold at Ouagadougou, Burkina Faso — shares topic coverage
- Determination of Soil Parameters and Pulling Force Requirement of Tapioca Root — shares topic coverage
- Study on Physicochemical Properties of Edible Oils Available in Bangladeshi Local Market — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
0
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.