---
title: "Global Circulation: Cells, Jets and Why Deserts Sit Where They Do"
description: "The tropics receive more energy than they radiate and the poles less, and the atmosphere moves the difference in a pattern of overturning cells bent by the Earth's rotation. Where air sinks it dries, "
canonical: https://lightmysky.com/learn/science/global-circulation-cells-jets-and-why-deserts-sit-where-they-do-mt_nHAXncXpaS
source: https://lightmysky.com/learn/science/global-circulation-cells-jets-and-why-deserts-sit-where-they-do-mt_nHAXncXpaS.md
retrieved: 2026-09-12
---

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# Global Circulation: Cells, Jets and Why Deserts Sit Where They Do

The tropics receive more energy than they radiate and the poles less, and the atmosphere moves the difference in a pattern of overturning cells bent by the Earth's rotation. Where air sinks it dries, which is why the great deserts lie in two bands rather than at random.

Subject: Science · Area: Earth's Systems · Ages 16 to 17
Page: https://lightmysky.com/learn/science/global-circulation-cells-jets-and-why-deserts-sit-where-they-do-mt_nHAXncXpaS

## Ready when they can

- Explain the three-cell pattern as a consequence of unequal heating plus rotation
- Predict the latitude bands of high rainfall and of desert from where air rises and sinks
- Say what a jet stream is and why it sits at the boundary between cells

## Lesson: Why deserts form two matching rings

Sunlight does not share itself evenly. Near the equator it strikes almost straight on, so each patch of ground drinks a strong dose. Near the poles it slants across a wider area, so each patch gets far less. The tropics therefore take in more energy than they radiate back, while the poles take in less. That leftover heat must travel, and the atmosphere is the carrier.

The carrier takes the shape of giant overturning cells, bent by Earth's spin into a three-cell pattern in each half of the globe. Where moist air rises near the equator, it cools and spills heavy rain. Where dry air sinks in the subtropics, it warms and parches the land into desert bands. Satellite pictures of rainfall and dry zones match this model, which is how you know it is real and not just a sketch.

**Example.** Read circulation like a detective with maps at three heights. For your latitude band, link the surface winds to the loop above them: air blowing toward the equator feeds the rising branch, and air returning high up feeds the sinking one. High above, where great cells meet, race the jet streams, fast rivers of wind at the boundaries. Each arrow on your map is one edge of a loop.

**Tip.** Never memorise the map as decoration. Derive it every time from two facts: uneven heating plus rotation. Rising means wet, sinking means dry, and spinning bends the paths between. That is why deserts cluster near matching latitudes on every continent: the sinking bands circle the whole globe, so each landmass inherits the same dry ring.

**Recap.** Surplus heat rides rising air up, rains at the equator, and sinks dry over the deserts.

## Practice

8 questions on this page, each with its working shown.

## Needs first

- [Hurricanes, Tornadoes & Monsoons](https://lightmysky.com/learn/science/hurricanes-tornadoes-and-monsoons-mt__wWHVvqMWb)
- [The Layered Atmosphere and Why Temperature Reverses With Height](https://lightmysky.com/learn/science/the-layered-atmosphere-and-why-temperature-reverses-with-height-mt_2icQ747JhN)
- [Global Wind Patterns](https://lightmysky.com/learn/science/global-wind-patterns-mt_iYOcfzFqMw)
- [Climate Zones](https://lightmysky.com/learn/science/climate-zones-mt_TMOzMCE17H)

## Opens up

- [The Ocean in Motion: Wind-Driven Gyres and the Deep Overturning](https://lightmysky.com/learn/science/the-ocean-in-motion-wind-driven-gyres-and-the-deep-overturning-mt_ZaWclUQ-fh)
