- Jing Jing Qin
- DOI: 10.5281/zenodo.22098267
- GAS Journal of Economics and Business Management (GASJEBM)
With the rapid
proliferation of outdoor camping culture, camping equipment has expanded from
the professional adventure sector to mainstream leisure scenarios. However,
camping cooking equipment currently available on the market often suffers from
inadequate human factors consideration—users frequently encounter challenges
such as disorganized workspaces, awkward operating postures, excessive
cognitive load under low-light conditions, and equipment assembly/disassembly
processes that deviate from natural mental models, all of which directly impact
camping safety and overall experience quality. This study focuses on the design
of portable camping cooking workstations and employs a dual research
methodology combining “literature review” and “real-world
fieldwork”: on one hand, it systematically reviews relevant theories and
existing research in human factors engineering, outdoor equipment design, and
cognitive ergonomics; on the other hand, it conducts field observations and
semi-structured interviews with a total of 26 participants—including members of
university outdoor clubs and random campsite users—to document typical cooking
task sequences and pain-point scenarios.
The study
identifies five major core human factors issues: abnormal static lumbar flexion
resulting from insufficient work surface height; a mismatch between the storage
space for small objects and the search strategies employed; a significant
degradation in the operability of fasteners under conditions of low flexibility
or when wearing gloves; spatial relationships between fuel and heat sources
that contradict risk perception intuition; and the lack of zoned cooking
workflows, which poses risks of cross-contamination and burns. Based on task
analysis and human-machine interface principles, this study proposes a creative
conceptual design for a “Folding/Unfolding Modular Cooking
Workstation,” which integrates five key human factors: adjustable work
height, magnetic quick-release storage, tactile-coded controls, a heat source
isolation duct system, and a single-handed operable snap-fit mechanism. The
value of this paper lies in integrating structured human factors engineering
analysis methods into a creative, exploratory product design process,
demonstrating that human factors principles are not merely a remedial tool for
“improving existing products,” but rather a core driver of innovation
during the conceptualization phase.
Keywords: Human factors engineering, Camping equipment, Creative conceptual design, Task analysis, Cognitive ergonomics.
