Global warming will increase rainfall in Earth's tropical regions: NASA

Global warming will increase rainfall in Earth’s tropical regions: NASA


The amount of rainfall in the Earth’s tropical regions will significantly increase as our planet continues to warm, a new study warns.

Most global climate models underestimate decreases in high over the tropics seen in recent observations, according to research led by scientist Hui Su of NASA’s (JPL) in the US.

Globally, rainfall is not related just to the that are available to make rain but also to Earth’s “energy budget” – incoming energy from the Sun compared to outgoing heat energy.

High-altitude tropical trap heat in the atmosphere. If there are fewer of these in the future, the tropical atmosphere will cool.

Judging from observed changes in over recent decades, it appears that the atmosphere would create fewer high in response to surface warming.

It would also increase tropical rainfall, which would warm the air to balance the cooling from the high shrinkage.

Rainfall warming the air also sounds counterintuitive – people are used to rain cooling the air around them, not warming it. Several miles up in the atmosphere, however, a different process prevails.

When water evaporates into water vapour here on Earth’s surface and rises into the atmosphere, it carries with it the heat energy that made it evaporate.

In the cold upper atmosphere, when the water vapour condenses into liquid droplets or ice particles, it releases its heat and warms the atmosphere.

It puts the decrease in high tropical cover in context as one result of a planet-wide shift in large-scale air flows that is occurring as Earth’s surface temperature warms.

These large-scale flows are called the atmospheric general circulation, and they include a wide zone of rising air centred on the equator.

Observations over the last 30 to 40 years have shown that this zone is narrowing as the climate warms, causing the decrease in high

Researchers at JPL and four universities compared climate data from the past few decades with 23 climate model simulations of the same period.

Climate modellers use retrospective simulations like these to check how well their numerical models are able to reproduce observations.

For data, the team used observations of outgoing thermal radiation from NASA’s spaceborne and the Earth’s Radiant Energy System (CERES) and other satellite instruments, as well as ground-level observations.

They found that most of the climate models underestimated the rate of increase in precipitation for each degree of surface warming that has occurred in recent decades.

The models that came closest to matching observations of in the present-day climate showed a greater precipitation increase for the future than the other models.

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