The Delta Aquariids meteor shower

Next peak
July 31, 2027, 19:27 UTC
Active
about Jul 13 to Aug 24
ZHR (ideal rate)
25
Moon at the 2027 peak
4% lit, dark skies
Radiant
Aquarius
Speed
41 km/s
Parent body
comet 96P/Machholz (most likely)
Best from
southern latitudes

 

The Southern Delta Aquariids supply the reliable background of late-July meteors. The stream probably comes from comet 96P/Machholz, an oddball sun-skirting comet with an unusual composition, part of a whole complex of related streams.

Peak times and moonlight, 2027-2029

Peaks below are computed from the shower's solar longitude, the same way the professional calendars do it, not read off a fixed date. Moonlight makes or breaks a meteor year, so each peak carries its Moon verdict.

YearPeak (UTC)Moon
2027July 31, 2027, 19:27 UTCMoon 4% lit, dark skies
2028July 31, 2028, 01:36 UTCMoon 74% lit, badly moonlit
2029July 31, 2029, 07:52 UTCMoon 70% lit, badly moonlit

Your best viewing window

Enter a location (or use your device's) and we compute the real watch window for the coming peak night: sky fully dark, Moon out of the way, radiant usefully high. All in your browser; coordinates never leave your device.

No location set yet.

Watching the Delta Aquariids

There is no sharp peak; rates hold up for a week or more around the maximum. The meteors are mostly faint, so a dark sky matters more here than for any other major shower.

How to watch any meteor shower

No instrument beats your own eyes: binoculars and telescopes see too little sky. Get away from direct lights, lie back so you can watch a wide stretch of sky about halfway up, and give your eyes a full 20 minutes to adapt (no phone screens; red light if you need it). Meteors appear all over the sky, not just at the radiant, so face whichever direction is darkest for you.

What the ZHR really promises

Every shower is advertised by its ZHR, the zenithal hourly rate, and every year that number disappoints people who take it literally. The ZHR is a standardized laboratory figure: the rate one experienced observer would count under a perfectly dark sky (limiting magnitude 6.5) with the radiant directly overhead. Real skies are brighter, real radiants sit lower, and real eyes miss meteors.

A workable rule: from a genuinely dark rural sky with the radiant high, expect to see about half the ZHR. From a typical suburb, a quarter or less. That said, a single brilliant fireball can outweigh an hour of counting, and the showers on this page all earn their reputations in a dark sky.

Catch the next peak

Shower peaks move from year to year. The newsletter flags the ones worth standing outside for, with dates from the same catalog as this page; the free calendar feeds carry moon phases, eclipses and seasons for planning dark nights.

Calendar feeds (moon phases, eclipses, seasons): subscribe (webcal) · download the .ics · all feeds and setup

Frequently asked questions

When do the Delta Aquariids peak in 2027?

CycleCalcs puts the computed peak at July 31, 2027, 19:27 UTC, with the shower active from about Jul 13 to Aug 24. Meteor peaks are broad enough that the nights on either side are usually worth watching too.

How many meteors will I actually see?

The headline ZHR of 25 is a standardized ideal, not a forecast. Under a truly dark sky with the radiant high, expect roughly half that; from a bright suburb, a quarter or less. Moonlight matters as much as anything: in 2027 the Moon is 4% lit at the peak (dark skies).

Where should I look to see the Delta Aquariids?

Everywhere: meteors streak across the whole sky. The radiant, the point their paths trace back to, lies in Aquarius, but staring at it shows you the shortest trails. Watch a wide area of dark sky about halfway up, in whatever direction is darkest from your site.

What causes the Delta Aquariids?

Debris from comet 96P/Machholz (most likely). Each July, Earth crosses the stream of particles this body has shed along its orbit; they hit the atmosphere at 41 kilometers per second and burn up as the streaks we see.

Keep exploring: all 13 major showers ranked for the year ahead, how meteor showers work from first principles, why the shower lands on nearly the same calendar dates every year, a rhythm set by the tropical year, and the Sky Map, which draws every active radiant on tonight's sky.

Showers either side of this one

Peak times and moonlight are computed with the same engine for every shower, so these are directly comparable.