Assessing acceptability, feasibility, and appropriateness of heat-mitigation infrastructure interventions in the BRAC primary schools of two selected climate-vulnerable districts of Bangladesh: A mixed-method implementation study
Loading...
Date
Publisher
BRAC University
Authors
Citation
Abstract
Background: In recent years, Bangladesh has seen a rise in heat waves, impacting the health,
well-being and livelihood of people. Children are one of the population groups experiencing the
worst impact. To reduce the impact of heat wave on primary school going children, BRAC James
P Grant School of Public Health (JPGSPH), BRAC University, in close collaboration with the
Architecture department of BRAC University and BRAC Education Programme (BEP) is currently
implementing two locally led heat-mitigation interventions - Solar Reflective Paint (SRP) and
Bamboo Ceiling with Polyethylene Foam (BCPF) in 92 BRAC primary schools located in two
climate-vulnerable districts of Bangladesh- Gaibandha and Kurigram. This study assesses the
acceptability, feasibility and appropriateness of these interventions.
Objectives: The objective of this study is to assess key implementation outcomes of two heatmitigation
infrastructure interventions, the SRP and BCPF, focusing on their acceptability,
feasibility, and appropriateness among key stakeholders in selected BRAC primary schools, which
are tin-sheds located in climate-vulnerable districts of Bangladesh.
Methods: A cross-sectional design using a convergent mixed-methods approach nested within the
parent Cluster Randomized Controlled Design (cRCT) was used.. To assess the acceptability,
feasibility and appropriateness, the TFA (Theoretical Framework of Acceptability), FIM
(Feasibility of Intervention) and IAM (Intervention Appropriateness Measurement) were used,
respectively. A 5-point Likert scale questionnaire was used to collect data from different
stakeholder groups such as BRAC School house owners, teachers and implementers. Both EFA
(Exploratory Factor Analysis) and CFA (Confirmatory Factor Analysis) were performed for the
TFA scale validation. Additionally, Cronbach’s Alpha values were assessed to measure the
internal consistency of the contextualized scale.
Results: The EFA revealed a three-factor solution to identify the TFA for both interventions, SRP
and BCPE with Cronbach's Alpha value (>0.7). Items from the EFA factors showed high median
scores for both of the interventions, which indicated high acceptability of the interventions.
Similarly, for both interventions the median score for feasibility and appropriateness were high.
Therefore, the results displayed that both interventions were feasible and appropriate for the
community and the implementers.
Conclusions: Both interventions, SRP and BCPF, were perceived as acceptable, feasible and
appropriate by the study population in the context of tin-surfaced one room classrooms run by BEP
in two climate vulnerable districts where extreme heat is a major problem impacting the health and
education of children.
LC Subject Headings
Climatic changes--Health aspects--Bangladesh., School buildings--Heating and ventilation., School buildings--Environmental aspects--Bangladesh., School facilities--Environmental aspects--Bangladesh., Heat--Physiological effect., Heat exhaustion--Prevention., Climate change mitigation--Bangladesh--Kurigram (District)., Climate change mitigation--Bangladesh--Gaibandha (District).
Description
This thesis is submitted in partial fulfillment of the requirements for the degree of Master of Public Health, 2026.
Cataloged from PDF version of thesis.
Includes bibliographical references (pages 60-66).
Cataloged from PDF version of thesis.
Includes bibliographical references (pages 60-66).
Publisher Link
Type
Thesis
Creative Commons license

Except where otherwise noted, this item's license is described as
Attribution-NonCommercial-NoDerivatives 4.0 International