Active Pregnancy, Children & Inherited Conditions Climate, Earth & Environment

Effect of housing modification on indoor thermal comfort and malaria vector densities in hot and humid zones of western and coastal Kenya

In plain English

AI plain-English summary

In hot and humid parts of Kenya, simple modifications to houses—screened windows, doors, and eaves—aim to keep homes cooler while blocking the malaria mosquitoes that enter through the same openings. This research addresses a dual problem that standard housing design often ignores. In western and coastal Kenya, dwellings need openings for ventilation, but these same gaps let in heat and mosquitoes. As global warming raises temperatures, heat-related illnesses reduce people’s ability to work and strain local economies. Meanwhile, malaria remains a major health risk. Current housing rarely balances cooling with mosquito control. If the modifications work, the impact would be immediate and practical. Households could maintain indoor temperatures within a comfortable, safe range without relying on expensive air conditioning. At the same time, screened openings would cut the number of malaria-carrying mosquitoes entering homes, lowering infection rates. This is not fundamental science—it is an applied test of a low-cost, scalable intervention. Success would give communities in hot, malaria-endemic zones a way to improve both daily comfort and long-term health, with no new technology or infrastructure required.

View original technical description
Heat stress and strain result in heat-related illnesses that affect an individual´s ability to work and reduce economic productivity at the community level. While the body maintains a heat balance through the thermoregulatory system, an increase in heat load overwhelms the body leading to illness. Global warming is expected to exacerbate heat-related illnesses, especially in Africa. To mitigate these consequences, it is important to maintain indoor temperatures within recommended thermal comfort zones. This is achieved through openings on dwellings such as doors, windows, and eaves. These openings are often not oriented to achieve cooling indoors, and double up as entry points for malaria mosquitoes further risking the health of occupants. We propose to implement simple house modifications with screened windows, doors, and eaves to provide cooling while preventing indoor entry of mosquitoes ultimately attaining thermal comfort and lowering the incidence of malaria.

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Researchers

Bernard Abong'o (EPMC Awardee)DANIEL PHILLIP KWARO (EPMC Awardee)Eric Ochomo (EPMC Awardee)

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