🚨 West Side Mountains north of 198: Lake Wind Advisory issued September 14 at 10:32PM PDT until September 16 at 12:00AM PDT by NWS Hanford CA     🚨 Graham, AZ: Flood Advisory issued September 14 at 10:29PM MST until September 15 at 1:30AM MST by NWS Tucson AZ     🚨 Harrison; Pottawattamie; Dodge; Washington; Saunders; Douglas: Special Weather Statement issued September 15 at 12:28AM CDT by NWS Omaha/Valley NE     🚨 Chesapeake Bay from Drum Point MD to Smith Point VA; Tidal Potomac from Cobb Island MD to Smith Point VA; Tangier Sound and the inland waters surrounding Bloodsworth Island: Small Craft Advisory issued September 15 at 1:24AM EDT until September 15 at 7:00AM EDT by NWS Baltimore MD/Washington DC     🚨 Montgomery: None     🚨 Pottawattamie, IA; Douglas, NE; Washington, NE: Severe Thunderstorm Warning issued September 15 at 12:22AM CDT until September 15 at 1:00AM CDT by NWS Omaha/Valley NE     🚨 Gila, AZ: Flood Advisory issued September 14 at 10:15PM MST until September 15 at 12:00AM MST by NWS Phoenix AZ     🚨 Pinal, AZ: Flood Advisory issued September 14 at 10:14PM MST until September 15 at 12:00AM MST by NWS Phoenix AZ     🚨 Bottineau; Rolette; McHenry; Pierce; Sheridan; Wells; Foster; Burleigh; Kidder; Stutsman; Emmons; Logan; La Moure; McIntosh; Dickey: Wind Advisory issued September 15 at 12:08AM CDT until September 15 at 4:00AM CDT by NWS Bismarck ND     🚨 Clark; Codington; Hamlin; Deuel: Special Weather Statement issued September 14 at 11:55PM CDT by NWS Aberdeen SD    

Active Tropical Systems & Formation Outlook

A whole-basin summary of all active tropical cyclones and the NHC Tropical Weather Outlook, generated with the tropycal package. Select a storm below for its official forecast and model guidance.

Summary & NHC 7-Day Formation Outlook

Valid: 05 UTC 15 Sep 2026

Active storms summary

Select a Storm

NORBERT (EP142026)

Type: TD Max Wind: 30 kt Min Pressure: 1006 hPa Position: 20.1, -139.9 Basin: East Pacific

FIFTEEN (EP152026)

Type: TD Max Wind: 30 kt Min Pressure: 1005 hPa Position: 16.5, -121.1 Basin: East Pacific
ZCZC MIATCDEP5 ALL TTAA00 KNHC DDHHMM Tropical Depression Fifteen-E Discussion Number 6 NWS National Hurricane Center Miami FL EP152026 800 PM PDT Mon Sep 14 2026 Visible satellite imagery continues to show the exposed center of Tropical Depression Fifteen-E well to the west of the convective area, due to westerly vertical wind shear of 10 to 15 kt affecting the system. In fact, the center has ran out farther ahead to the west of the convection compared to earlier today, now about 40-45 n mi from the nearest deep convection. The latest subjective and objective satellite intensity estimates range from 29-35 kt. An earlier ASCAT-B overpass at 14/1630 UTC showed peak vectors of 27 kt located 60 to 80 n mi from the center in the eastern semicircle. The initial intensity is held at 30 kt since the tropical cyclone has not become any better organized since the time of the ASCAT pass. Satellite fixes over the past 12 to 18 hours have been a bit erratic, but generally indicate a motion slightly south of due west, or 260 degrees at 9 knots. Ridging to the northwest of the depression should keep it on a similar heading for the next couple of days. By late Wednesday, global models show the orientation of the ridge changing slightly, which should cause the depression to turn to a direction between west and west-northwest with a slight increase in forward speed for the remainder of the forecast period. The latest NHC track forecast is a bit south of the previous one, and lies between the farther north TVCN and the farther south HCCA and GDMI. It should be noted that the cross track spread is quite large from hour 24 onward, and confidence in the track forecast is below average. The environment is generally unfavorable for significant strengthening due to the moderate northwesterly vertical wind shear advecting some dry air into the center of the depression. Even though this shear should decrease some over the next 24 h, the intensity models are in good agreement that this system is unlikely to strengthen beyond a low-end tropical storm. Given how far any convection is from the center currently, and that the system should start weakening in a couple of days as it reaches a drier environment, significant intensification appears unlikely. The depression could potentially become post-tropical or dissipate sooner than this forecast indicates. FORECAST POSITIONS AND MAX WINDS INIT 15/0300Z 16.5N 121.6W 30 KT 35 MPH 12H 15/1200Z 16.3N 122.9W 30 KT 35 MPH 24H 16/0000Z 16.2N 124.7W 35 KT 40 MPH 36H 16/1200Z 16.1N 126.6W 35 KT 40 MPH 48H 17/0000Z 16.1N 128.8W 35 KT 40 MPH 60H 17/1200Z 16.3N 131.1W 30 KT 35 MPH 72H 18/0000Z 16.6N 133.6W 30 KT 35 MPH...POST-TROP/REMNT LOW 96H 19/0000Z 17.2N 138.1W 25 KT 30 MPH...POST-TROP/REMNT LOW 120H 20/0000Z...DISSIPATED $$ Forecaster Hagen NNNN

90W (WP902026)

Type: TD Max Wind: 25 kt Min Pressure: 1002 hPa Position: 15.1, 150.9 Basin: West Pacific
HAFS and GEFS guidance is only available for storms in the US/NHC domain (Atlantic & East/Central Pacific). For this system, the basin summary and best-track position are shown.

ECMWF 10-m Streamlines

This map visualizes near-surface winds from the ECMWF operational model using streamlines — continuous curves that show the direction of the wind at every point. Streamlines help us visually detect patterns of atmospheric flow, such as jets, troughs, and areas of rotation.

Forecasters at the NHC monitor 10-meter wind fields for signs of a closed low-level circulation — a common feature of early tropical cyclone formation. When streamlines wrap into a tight, circular pattern and form a closed loop, it may signal that a system is transitioning from a disorganized disturbance into a structured cyclone.

This early organization of wind flow is a key threshold in classifying an area as a potential tropical cyclone. While other ingredients like convection and mid-level humidity are also necessary, closed low-level circulation is often the first structural milestone forecasters look for.

Look for small, circular loops in the streamlines over oceanic regions — especially where other environmental factors also align for storm formation.

Streamline Wind Map

ECMWF Predictions

No active storm found in ECMWF data at this time.

Environmental Indicators

Hypothetical TC Drift Paths

This map displays hypothetical tropical cyclone (TC) paths projected from genesis-favorable zones identified by an environmental mask. These paths are computed using the Emanuel Beta and Advection Model, a physically based framework that estimates the motion of nascent cyclones by combining steering-level winds and planetary rotation effects.

The model blends winds from two critical pressure levels — 850 hPa (lower troposphere) and 250 hPa (upper troposphere) — weighted toward the lower level where most of a tropical cyclone's mass resides. It also incorporates a background component associated with beta drift, which arises from the variation of the Coriolis force with latitude.

Each pink trajectory represents a storm initialized from a grid cell where all five environmental thresholds were favorable: high CAPE, low vertical wind shear, high mid-level humidity, warm SSTs, and positive low-level vorticity. Arrows darken with time, tracing the cyclone’s evolution in 6-hour steps. These tracks can move over land given the steering winds, but in reality these storms weaken quickly when no longer over warm water. This means the tracks that move over significant would likely die out quickly and are not well represented in this model.

Hypothetical storms often drift westward and poleward, steered by large-scale tropical flow and Earth's rotation — this helps forecasters anticipate where early-stage disturbances might evolve into organized storms.

TC Drift Path Map

Pressure & Rainfall (hPa)

This chart shows 24-hour forecasts of surface pressure (in hPa) and precipitation (in mm) for select U.S. cities. The data comes from the Open-Meteo API, which sources its predictions from high-resolution numerical weather models like ICON (from the German Weather Service) and ECMWF's IFS. These are advanced general circulation models (GCMs) that solve physical equations governing the atmosphere — including thermodynamics, fluid motion, and radiation — to simulate and forecast future states of weather.

A sudden drop in pressure may signal the approach of a developing storm system. Increasing rainfall intensity often tracks with tropical activity or frontal systems. These paired indicators help visualize evolving atmospheric instability and potential hazards.

NBDC Gulf Buoy Data

This data comes from the National Data Buoy Center (NDBC), a division of NOAA responsible for monitoring ocean and atmospheric conditions using moored buoys, coastal stations, and drifting floats. These sensors play a vital role in tracking tropical cyclone development by recording variables like wind speed, barometric pressure, air & sea surface temperatures, and wave height — all of which help determine storm structure and intensification.

A sudden drop in sea-level pressure or a spike in wind gusts can signal rapid cyclone strengthening. Water temperature above ~26°C is a key fuel source for tropical cyclones. Wave and swell height give insight into the storm’s reach and energy transfer across the ocean. Monitoring these in real time helps improve forecasts and early warnings.

Wind: ENE (60°), 3.9 kt   |   Gust: 5.8 kt

Pressure: 30.04   |   Air Temp: 86.4 °F

Water Temp: 88.2 °F   |   Dew Point: 78.6 °F

Swell: 1.0 ft   |   Wind Wave: 0.3 ft

NWS U.S. Radar

The National Weather Service (NWS) collects radar data using the NEXRAD (Next Generation Radar) network — a nationwide system of over 150 high-resolution Doppler radar stations. Radar works by emitting pulses of energy that bounce off precipitation (like raindrops, hail, or snow) and return to the radar dish. Doppler radar not only detects the location and intensity of storms, but also their motion — by measuring shifts in frequency caused by movement of particles toward or away from the radar site. This allows meteorologists to spot rotating storms and potential tornadoes in real time.

US National Radar Loop

GOES 15-min Satellite

The GOES (Geostationary Operational Environmental Satellite) system is operated by NOAA and provides continuous weather observation over the Americas. Orbiting 22,300 miles above Earth, GOES satellites deliver high-resolution imagery every 15 minutes, helping track tropical systems, cloud formation, and atmospheric motion in real time. The Geocolor imagery shown here combines visible and infrared data to highlight clouds, land, and sea in a natural-looking format.

Satellite

GOES Band 13 – Infrared (IR) Imagery

Band 13 (10.3 µm) is one of the most important infrared channels for tropical meteorology, measuring emitted radiation from cloud tops. Colder colors (red, yellow) signal deep convection, where strong thunderstorms punch through the upper atmosphere. These features often indicate the early stages of tropical cyclone formation.

GOES IR Band 13

Most recent GOES Band 13 image. Provided by NOAA/NESDIS/STAR.