Lately, nights in San Diego where I live have been hot and sticky. The humidity is so intense that the air clings to my skin and the bedsheets are often damp with sweat. We don’t have air conditioning, so the lazy whirring of fans has become the soundtrack to my restless tossing each night.
It’s not just me. Heat waves are blazing through much of Southern California, the Southwest, and other parts of the United States, as well as North Africa, the Middle East, and Southern Europe. That means billions of people may be struggling to get a good night’s rest. According to a new analysis from climate change nonprofit Climate Central, the average person around the globe lost almost 56 hours of sleep a year to elevated nighttime temperatures from 2020 to 2025.
Read More: “Where Human Sleep Went Wrong”
Why does the heat make you sleepy but also render it difficult to catch sufficient zzzzzs?
It seems like a strange paradox, but sleep and body temperature are closely linked. Heat makes you sleepy during the day because it takes energy for the body to regulate its temperature, but also because this cooling process can mimic what happens at night, when the body tries to cool itself down before sleep. To reach sleep and stay asleep, your core body temperature needs to drop and keep dropping. Heat at night not only increases the body’s tendency to wake up, it decreases time spent in the deepest stages of sleep: REM, which is associated with vivid dreaming, as well as slow wave, which helps with tissue repair, immune support, memory, and emotional regulation.
Humidity is one of the biggest troublemakers. It affects how heat stressed your body is during sleep, because when it’s humid, your sweat doesn’t evaporate efficiently, making it harder for the body to cool down naturally. Because sleep loss can accumulate over a succession of nights, even small gaps in rest each night are associated with many health problems, including obesity, heart disease, diabetes, and depression.
The problem of torrid nights and broken rest is not likely to abate anytime soon. In every city the Climate Central researchers analyzed, the amount of sleep loss attributable to temperature had doubled or more since the 1970s. More than 10 percent of that annual average sleep loss was related to climate change, they calculated, and global average temperatures are forecast to keep setting new records over the next five years and beyond. More and more people around the world are also relocating from rural areas to urban ones, where temperatures are often amplified at night due to something called the heat island effect: Buildings and roads absorb the sun’s heat instead of reflecting it. In rural or suburban areas, by comparison, trees and grass cool the air by releasing water.
In all, the researchers looked at 1,338 cities around the world, including any city with populations greater than 500,000, plus a list of 253 cities in the U.S. The hotter it was, the more sleepers struggled, the scientists found. Cities in the Middle East had it worst—particularly in Saudi Arabia, Oman, the United Arab Emirates, southern India, several countries in Southeast Asia, and West Africa. The strongest effects were also concentrated during the hottest seasons—the summer months and the hot and dry pre-monsoon seasons—and among the most vulnerable populations: those who didn’t have air conditioning and couldn’t afford it. Globally, in 2021, only about 35 percent of households had air conditioning, which is closely tied to income.
Some people are more vulnerable to heat-related sleep loss than others: People over age 65 were more than twice as likely to suffer sleep loss due to higher temperatures, the Climate Central analysis found. Women were more susceptible, as well. How much a given hot night affects a person’s sleep also depends on many variables that are more or less within our control: work schedules, stress, health, caffeine, light, noise, bedroom conditions, and humidity.
Writing in The Conversation, Nottingham University professors Amin Al-Habaibeh and Francesco Luke Siena recently offered some simple tips to help people manage the factors that are within their control during a heatwave so that they can sleep, particularly if they lack air conditioning. Close the blinds when the sun is strong to keep your living space cool, open windows to get a cross breeze going when the air outside cools off, and avoid using appliances that create extra heat, such as ovens, tumble dryers, and dishwashers, during the hottest times of day. Choose light breathable bedding, too, and move your bedroom if it’s on an upper floor or faces west, or, in the Northern Hemisphere, south.
Most of their tips are common sense, but one of them may come as a surprise: Be careful with fans. They can help sweat evaporate and make you feel cooler, but they do not actually cool down the air, and might dehydrate you if you are elderly or unwell. If you do use a fan, be sure to drink water and don’t position the fan so that it’s blowing cold air on your face all night while you’re sleeping.
What about the new-fangled temperature-controlled mattresses that have come to market in recent years? Probably, if you have the money to buy one of these—they can range in price from $700 to $5,000 and often include subscription fees—you also have air conditioning, which makes nighttime temperature control somewhat less fraught. But a recent small independent study conducted by researchers in Australia and Canada found that while some sleepers reported better sleep after using one brand of temperature-controlled mattress, by objective measures, the fancy mattress made no difference in their sleep quality.
The scientists tracked the sleep of 34 adults over a two-week period in a randomized study, with 7 nights temperature control on and 7 nights off, using wrist actigraphy to measure rest and wake cycles and sensors embedded in the mattress to gauge heart rate and respiratory rate. They concluded that the mattress worked on the sleepers’ perceptions of their sleep by way of the placebo effect.
For now, I think I will stick with my fan, pushing hot air around my bedroom as the globe cooks, humming through another muggy San Diego night.
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Lead Image: Frederic Leighton / Wikimedia Commons
Facts Only
* Nights in San Diego have been hot and sticky due to intense humidity.
* Globally, the average person lost almost 56 hours of sleep a year between 2020 and 2025 due to elevated nighttime temperatures.
* Heat makes people sleepy during the day because the body expends energy regulating temperature.
* The body requires core body temperature to drop to achieve and maintain sleep.
* Heat at night decreases time spent in deep sleep stages, specifically REM and slow-wave sleep.
* High humidity impedes sweat evaporation, making natural cooling difficult during sleep.
* Sleep loss accumulates over successive nights and is linked to health issues like obesity, heart disease, diabetes, and depression.
* Sleep loss attributable to temperature has doubled or more since the 1970s in analyzed cities.
* Over 10 percent of annual average sleep loss related to climate change.
* Cities in the Middle East experienced the worst effects, particularly in Saudi Arabia, Oman, UAE, southern India, several Southeast Asian countries, and West Africa.
* Strongest effects were concentrated during summer months and hot and dry pre-monsoon seasons.
* Only about 35 percent of households globally had air conditioning in 2021, tied to income.
* People over age 65 were more than twice as likely to suffer sleep loss due to higher temperatures.
* Women were found to be more susceptible to heat-related sleep loss.
* Tips provided include closing blinds, opening windows for cross breezes, avoiding heat-generating appliances, and using light bedding.
Executive Summary
Full Take
The narrative frames environmental conditions—specifically high temperature and humidity during the night—as a direct, quantifiable mechanism eroding human biological necessities like sleep quality. The core mechanism presented is not just thermal discomfort but the disruption of crucial sleep architecture (REM and slow-wave sleep) through altered body thermodynamics. This shifts the focus from simple physical comfort to systemic health risks, linking climate phenomena directly to public health metrics. A key pattern observed is the segmentation of vulnerability: those without access to mitigation (like air conditioning) and demographic factors (age, gender) bear disproportionate burdens. The argument then pivots between behavioral adjustments (simple, low-cost strategies) and technological solutions (mattresses), ultimately showing that even advanced technology may provide only a perceptual benefit rather than objective physiological change. This suggests a tension between perceived control and objective reality in managing environmental stressors. The reference to the "heat island effect" reinforces an underlying pattern where environmental changes are amplified by infrastructure, disproportionately affecting vulnerable populations living in specific spatial contexts (urban vs. rural).
Patterns detected: ARC-0043 Motte-and-Bailey, ARC-0024 Ambiguity, ARC-0016 Authority Game
Bridge Questions: If the focus remains on behavioral changes, how do we design systems that automatically prioritize cooling and rest during extreme events rather than relying on individual, energy-intensive decisions? What is the long-term impact of treating sleep loss solely as a consequence of temperature versus recognizing it as an independent determinant of health? Does the reliance on placebo effects in technology mask the need for fundamental environmental adaptation?
Sentinel — Human
The text reads like a blend of journalistic reportage grounded in climate science and a personal, reflective essay, strongly suggesting human authorship rather than pure algorithmic generation.
