← The Nuclear Watch Dog
Example Watch. Live public data, set up for three sample evacuation routes from Knoxville, TN to Mena, AR. Alerts, saved settings and personal triggers are switched off in this demo. Your own Watch is built around your home, your destination and your routes, and sends alerts to your phone and email.

Watch example

Seismic events and radiation levels, from the two sources that are public and near real time.

1 USGS earthquake feed tells you something happened

What it is. The U.S. Geological Survey runs the national earthquake monitoring system and pulls in seismometers from around the world. It publishes every earthquake it detects, worldwide, usually within minutes, as a free public feed.

Why we use it. It is the fastest public signal. A large explosion shakes the ground like an earthquake, so it shows up here within minutes, hours before anything could reach us through the air. It gives the time, place, size and depth. That lets us see how far an event is from home and the routes, and whether it is near a known nuclear test site.

Its limit. Its first, automatic report calls almost everything an earthquake. USGS labels an event an "explosion" only after analysts review it, sometimes hours later, and an air burst may not register at all. That is why we also watch radiation.

2 EPA RadNet tells you whether it is reaching us

What it is. The Environmental Protection Agency's national radiation monitoring network. It has fixed air monitors in cities in every state, measuring gamma radiation around the clock and publishing hourly readings free to the public.

Why we use it. It answers the question that changes decisions: is radiation rising here, or heading this way? We track every monitor in Tennessee, Arkansas, Oklahoma and Texas, plus the monitors upwind of both routes. Weather usually moves west to east, so a real rise would show up at the western monitors first. Each monitor is compared with its own normal level, and alerts go to your phone and email if any reaches the alarm level.

Its limit. It is slower: EPA posts hourly readings, often an hour or more late, and airborne material takes hours to days to travel. Rain also causes harmless short spikes.

Together: USGS is the early heads-up that something may have happened; RadNet confirms whether it matters where we are. Neither one is an official warning. Wireless Emergency Alerts on your phone and local radio come first.

Threat levels

context · check the source for today's level

Background indicators for the USA, Europe and Japan. These are not live measurements like the earthquake and radiation data below. Each card says who publishes the level, whether it is official, and links to the source, so you always see today's figure rather than a copy that may be out of date.

DEFCONUnofficial estimate
54321

The scale, for reference: 5 is normal peacetime readiness, 1 is nuclear war imminent. No level is marked because the real one is not public.

The real DEFCON level is classified. The Pentagon does not announce changes; the last one confirmed publicly was DEFCON 3 on 11 September 2001. DEFCON is a US-only system: Europe and Japan do not have one, and NATO's own alert states are also secret.

A private group of open-source analysts publishes an estimate, including separate figures for the US commands that cover Europe (EUCOM) and the Indo-Pacific (INDOPACOM). Treat it as informed guesswork.

DEFCON estimate at defconlevel.com ↗
USAOfficial

National Terrorism Advisory System, from the Department of Homeland Security. When there is a specific or general threat to the US, DHS issues a public Bulletin, or an Alert (Elevated or Imminent), each with an expiry date. When nothing is in effect, the page says so.

Current NTAS advisory at dhs.gov ↗

Also on your phone: Wireless Emergency Alerts, the official channel for an attack or radiation warning in your area.

EuropeOfficial (UK)

There is no single public threat level for Europe. The clearest official one is the UK national terrorism threat level, set by MI5 on a five-step scale:

LowModerateSubstantialSevereCritical

It covers terrorism, not war. NATO's military alert states are not published.

Current UK threat level at mi5.gov.uk ↗
JapanOfficial

Japan has no standing threat level. Instead it has J-Alert, the government's national warning system. It sends missile and attack warnings straight to phones, TV and town loudspeakers in the areas at risk, usually within minutes of a launch. The Ministry of Defense then publishes details of each North Korean launch.

How J-Alert works (Cabinet Secretariat, PDF) ↗ Japan Ministry of Defense ↗
Doomsday ClockExpert assessment
85 seconds to midnight

Set by the Bulletin of the Atomic Scientists on 27 January 2026, the closest to midnight it has ever been. It is reset once a year, usually in late January. It reflects expert judgment of nuclear, climate and technology risk, not a military readiness level.

Doomsday Clock at thebulletin.org ↗

When to leave

decision board · Knoxville → Mena (example)

This example assumes home is in Knoxville, close to the Oak Ridge nuclear-weapons complex, a likely target. The plan is to use one of the two routes to Mena early, before anything happens, not in the minutes after a warning. This board puts your own triggers next to the live signals on this page and suggests which of the three situations you are in. It is a guide for your judgment: official instructions (Wireless Emergency Alerts, local radio) always come first.

Checking…

Live signals

Your triggers you tick these · saved in this browser

Checklists

1
Tension building — leave early

Days to hours before anything happens. The best use of the routes.

  • Fill the tank; fill the cans. Carry enough fuel for the longer route plus a detour, without counting on stations.
  • Check the fallout wind panel; pick Route A or B, whichever the wind favours.
  • Download offline maps; take the printed directions.
  • Cash, ID, documents, medicines (a month), glasses, phone chargers and a power bank.
  • Water (1 gal per person per day), food for a week, first-aid kit.
  • Battery or hand-crank AM/FM/NOAA radio.
  • N95 masks, plastic sheeting, duct tape, a change of clothes in a sealed bag.
  • Tell family where you're going and by which route; agree when you'll check in.
  • Leave in daylight if you can, and before the roads fill.
2
Missile warning — shelter now

Minutes of warning. Do not drive: you would not get clear, and a car gives almost no protection.

  • Get to the basement, or the centre of the house on the lowest floor. Away from windows.
  • If you see a flash: drop, cover your head, stay down until the blast wave has passed (a few miles out it can take 30 seconds or more to arrive).
  • Stay inside at least 24 hours unless officials say otherwise. Fallout is worst in the first hours.
  • Radio on for instructions. Keep phone use short; networks will be jammed.
  • If you were outside: remove outer clothing, bag it, shower (no conditioner) or wipe down.
3
After a strike you survived — go when the route is clear

You have sheltered through the first danger. Now decide when to move.

  • Check this page (or the last saved map image): wind verdicts for each base on both routes, and the upwind monitors.
  • Knoxville's own fallout would mostly drift east; both routes head west, away from it.
  • Use the dose calculator: waiting even a day cuts fallout levels roughly tenfold.
  • Drive with windows shut and air on recirculate; don't stop in open country under a plume.
  • Cover skin; mask on; brush off and wash at the first safe stop.
  • Potassium iodide (KI) only if public-health officials tell you to; it protects the thyroid only.

Guidance based on ready.gov/radiation and FEMA's planning guidance for a nuclear detonation ("get inside, stay inside, stay tuned").

Checking…

Seismic

USGS · live

Every earthquake the USGS has recorded worldwide in the last 24 hours, above the magnitude you pick. An underground or ground-level explosion registers here within minutes, but so does every ordinary earthquake. USGS first reports nearly everything as an earthquake and relabels an event "explosion" only after review. When it does, the row says so in red. Narrow the list to the regions that matter and the noise drops sharply.

Feed
Where
When (local)MagDepthPlace From KnoxvilleFrom Mena
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Amber marks an event that is both shallow (10 km or less) and M4.0 or above — unusual for a natural quake, and what an explosion looks like on a seismograph. Red marks one within 95 miles of a declared or former nuclear test site: Nevada, Novaya Zemlya, Lop Nur, Punggye-ri, Semipalatinsk, Pokhran, Ras Koh. Both are prompts to go and check other sources, not conclusions — earthquakes happen near test sites too, and most of these regions are seismically active anyway. Note that the Europe and Russia boxes overlap over western Russia, which is in both.

Nationwide alarm watch

every EPA RadNet monitor · USA

Every EPA radiation monitor in the country, checked for the alarm level. If any of them reaches it, the red banner at the top of this page and the phone and email alert name the city and state, and say how far it is and in which direction from home (Knoxville in this example). Monitors much higher than their own normal level are also flagged here. That is more often rain or a fault than anything real, so they don't trigger an alert.

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Normal25%+ above its normal 2× its normal or moreAt the alarm level No data right nowFilter site, no hourly feed

Fallout wind watch

Open-Meteo · updates hourly

If the bases near the routes were hit, the fallout would go where the wind above them takes it. This panel shows that wind, now and for the next 24 hours, at each base. It says whether it is blowing toward the route, how long fallout would take to arrive, and what the radiation monitors under that path are reading.

Route A is fastest but runs through Nashville, Memphis and Little Rock, and passes about 15 miles from Little Rock AFB. Route B avoids every large city and that base, at the cost of two-lane roads and more time. Route C stays north of the whole I-40 corridor, keeping about 45 miles from Little Rock AFB and well away from Barksdale. It is the longest, crosses the Ohio and Mississippi at Cairo, passes about 15 miles from Fort Campbell, and runs closer to Whiteman AFB's side of the map. Which route is safest depends on the wind that day, which is what this panel shows. Drive times come from TomTom with live traffic, refreshed every 15 minutes, using this site's own TomTom key (your own Watch gets its own free key, which we help you set up). Both routes are on the map, and each target shows its verdict for all three (A, B, C). Pick a route: the chances and the fallout table below follow it.

Targets modelled for this corridor. Oak Ridge (Y-12 weapons complex, at the start), Redstone Arsenal (Huntsville, near Route B), Little Rock AFB (beside Route A), Tinker AFB (upwind of Mena), Barksdale AFB (south of Mena) and Whiteman AFB (north-west). Any of them could send fallout across a route, depending on the wind. Your own Watch models the targets around your own home and routes.

Loading winds…
Map time Now
Selected routeOther routes (A blue · B amber · C violet)Base Where fallout would go in 12 h at the current wind EPA monitor (amber or red when above normal)

Chance fallout would reach the selected route, hour by hour

If a base were hit at that hour, how likely is it that its fallout would cross the road? This is not the chance of an attack. It uses that hour's forecast wind plus how uncertain the forecast is. The uncertainty grows the further ahead you look, is larger when the winds at different heights disagree, and is larger again when the wind is light. "Any of them" treats the targets as independent.

Estimated fallout on the selected route if the bases were hit, hour by hour

What radiation level each town on the route would see, hour by hour, if the bases you tick were hit by ground bursts, carried by the forecast wind at that time. It uses WSEG-10, the standard US civil-defense fallout model, and the "mean case" it predicts. Real fallout can be several times higher or lower, and a wind shift moves the plume entirely. Weapon size is an assumption; change it below. Weapons exploded in the air leave very little local fallout, so these figures are the heavy case.

Bases hit

What the numbers mean for you. Staying inside cuts the dose a great deal. A car blocks almost nothing; a house cuts it roughly 2–3×; a basement roughly 10×; the middle of a large building's basement, 100× or more. Dose rate falls about tenfold for every sevenfold increase in time: at 7 hours it is a tenth of the 1-hour level, at 2 days a hundredth. That is why sheltering first and driving later is almost always safer than driving through a plume. The "dose to 48 h" column assumes you are outdoors the whole time from when fallout arrives. Model: WSEG-10 (Hanifen, AFIT 1980), ported from the MIT-licensed glasstone library; 50% fission yield; dose rate falls as t−1.2.

Each area in detail

How to read it. "Fallout wind" is the average of the winds at about 5,000, 10,000 and 18,000 ft (850, 700 and 500 hPa). That is the layer that carries most fallout from a ground-level burst. Surface wind is shown too, but it matters less. The panel checks the fallout wind against every point along the selected route, from Knoxville to Mena. HIT means it points within 25° of the road, so fallout from that base would cross the route. NEAR MISS means within 50°, so the edge of a spreading plume could reach it. MISS means it is blowing away from the road. The "next 24 h" strip shows how that is expected to change as the wind shifts. Real plumes spread and curve as the wind changes, so treat the arrival times as rough. Rain along the path brings fallout down faster and heavier where it falls. It also causes the harmless radon spikes on the radiation charts, so rain is shown on each card. This panel is a planning aid, not a fallout forecast. After a real attack, follow official instructions.

Weather data by Open-Meteo.com (CC BY 4.0), from national weather service models.

Directions

Knoxville → Mena · three routes

For each route: a road-by-road overview (it works without a signal and prints), a button that opens the exact route in Google Maps on your phone, and full turn-by-turn directions from TomTom with live traffic. Download the maps for offline use before you need them. The overviews are written summaries; where they and the turn-by-turn differ, follow the turn-by-turn, and drive each route once before you need it.

Route

Radiation health guide

dose, time and what it does

A dose rate (R/h) only matters through the total dose you build up: rate × time. These tables turn the numbers on this page into what they mean for your body. For the gamma radiation from fallout, 1 R ≈ 1 rad ≈ 1 rem ≈ 10 mSv. The effects below are for the whole body receiving the dose within minutes to a few days, which is the fallout case.

What a total dose does

Total doseWhat happensSurvival
under 5 RNo noticeable effect. A slight rise in lifetime cancer risk (about 1 in 400 extra at 5 R). For scale, natural background is about 0.3 R a year.No effect on survival
5 – 30 RNo symptoms. Lifetime cancer risk rises about 1–1.5 percentage points at the top of this range.No effect on survival
30 – 70 RMild symptoms possible in some people (nausea, tiredness). Blood counts dip for a few weeks and recover.No deaths expected
70 – 200 RRadiation sickness begins. Nausea and vomiting within hours, then a symptom-free spell. Blood counts fall over the following weeks, raising infection risk. Most recover; medical care helps
200 – 500 RSevere radiation sickness. Vomiting within an hour or two. Hair loss, bleeding and serious infections 2–4 weeks later. From about 250–500 R, around half die within 60 days without medical care
500 – 1,000 RVery severe. Gut damage starts from about 600 R. Most die within weeks, even with care
over 1,000 RGut and circulatory collapse.Fatal, within days to 2 weeks

Long term, each 100 R adds roughly 5 percentage points to lifetime risk of fatal cancer. The same total spread over weeks or months does much less immediate harm, because the body repairs between doses. Thresholds from CDC's clinical guidance on acute radiation syndrome (ARS begins above about 70 rad, mild symptoms from about 30 rad, LD50/60 about 250–500 rad, gut syndrome above about 1,000 rad).

How long it takes to reach each dose, at a steady rate

Standing outdoors, unprotected, at a rate that does not change. Real fallout fades, falling to about a tenth for every 7× increase in time since the burst (see the calculator), so these times are the worst case for that reading.

Dose calculator

Protection factors are typical values from US civil-defense guidance; the real value depends on the building. Driving through fallout counts as "in a car". Dust on skin and clothing adds to the dose, so brush off and wash when you get inside.

Radiation

EPA RadNet · hourly

Every EPA gamma monitor in Tennessee, Arkansas, Oklahoma and Texas, plus the neighbouring monitors upwind of the two routes. Each chart is that monitor's dose rate over time, with its own 30-day median drawn as a dashed line — absolute numbers differ by site and mean nothing on their own, so the thing to watch is a line lifting away from its dashed baseline.

Range Scale
Show
Loading EPA data…
Alarm settings (demo: see how the setpoints look; nothing is saved or sent)

Current alarm level: 1 mR/h. Normal background at these monitors is about 0.004–0.010 mR/h. Changes apply to the page, the phone app and email.

Radiation — every EPA monitor in the USA
Alarm absolute level, any monitor
Warning a monitor well above its own normal
Seismic — USGS, checked every few minutes
US earthquake USA, Alaska, Hawaii, Puerto Rico
Shallow and strong the pattern an explosion makes
Near a nuclear test site anywhere in the world, within 95 miles
USGS says "explosion" anywhere in the world
Missile-field strike many shallow events at once in an ICBM field

Untick both Phone and Email to turn a block off. Each earthquake is alerted once. A radiation warning is sent again only after that monitor has dropped back down.

Read this before trusting a high number. Rainfall washes radon decay products out of the air and routinely pushes a monitor 50–100% above its baseline for a few hours. That is the most common cause of a spike by a wide margin, and it is local weather, not a plume. What would indicate something real is a sustained rise, at several monitors, moving downwind from one to the next, without rain to explain it. One station, briefly, on a wet day, is rain.

Why these monitors, for this example. Both routes run west from Knoxville to Mena, in the Ouachita Mountains of western Arkansas. Weather here mostly moves from the west or south-west, and in summer often up from the Gulf, so the monitors that would see something coming before it reached either road are:
  • Oklahoma and Texas: directly upwind of Mena. Oklahoma City is next to Tinker AFB; Amarillo is next to Pantex, the US nuclear-weapons assembly plant.
  • Arkansas: Fort Smith is 80 miles north of Mena; Little Rock sits beside Route A and Little Rock AFB.
  • Louisiana and Mississippi: upwind in southerly Gulf flow. Shreveport is next to Barksdale AFB; Jackson is closest to the Grand Gulf nuclear plant, and to Route B's Mississippi crossing.
  • Missouri and Kansas: upwind of the northern leg in north-westerly flow, around Whiteman AFB.
  • Tennessee: Knoxville (home), Nashville and Memphis, along Route A.
Your own Watch picks its monitors around your own home, destination and routes.

Readings are dose equivalent rate in nSv/h where the monitor reports it, otherwise gamma count rate in CPM. Breaks in a line are hours EPA has no reading for — gaps happen from telecoms outages and maintenance. The server checks EPA every 20 minutes and this page re-checks the server every 10, so a new EPA reading appears here within about half an hour of EPA publishing it.

Health effects: dose rate × time

what a reading means for your body

A dose rate (R/h) is how fast radiation is hitting you. What harms you is the total dose: the rate multiplied by the time you are exposed. The same 1 R/h is harmless for a few minutes and dangerous for a few days. For fallout gamma rays, 1 R is about 1 rem, or 10 mSv. The figures below are for a whole-body dose received over a short time, a day or two, by a healthy adult. Children and pregnant women are more sensitive.

Under 25 R
No symptoms. No short-term effect you would notice. A small added lifetime cancer risk, roughly +0.05% per R; 10 R adds about half a percent.
25–100 R
No symptoms, blood changes. Blood tests would show a temporary drop in white cells. You would feel fine. Cancer risk up by up to about 5%.
100–200 R
Mild radiation sickness. Some people get nausea, vomiting and tiredness within hours to a day. Nearly everyone recovers.
200–450 R
Serious radiation sickness. Vomiting within hours for most people. Hair loss and infections after 2–4 weeks. Some deaths without medical care, rising toward half at the top of the range.
450–600 R
Severe. About half die within 60 days without medical care (the "LD50"). Hospital care greatly improves the odds.
Over 600 R
Very severe to fatal. Death likely even with good care; above about 1,000 R, fatal.

Time matters twice. First, fallout decays fast: its dose rate falls about tenfold for every sevenfold increase in time since the burst, so the first day holds most of the danger. Second, the body repairs itself. The same total dose spread over weeks does much less harm than taken in one day, which is why sheltering first and moving later works.

Quick reference: total dose if the rate stayed the same

Rows are dose rate; columns are time spent in it. Each cell is the total dose, coloured by the effect bands above. This is the worst case: real fallout decays, so the true dose is lower. The calculator below accounts for decay.

Calculator

Sources: CDC, Acute Radiation Syndrome, a fact sheet for clinicians; Glasstone & Dolan, The Effects of Nuclear Weapons (1977), ch. 9 and 12; ready.gov/radiation. Shelter factors are the usual civil-defense rough values; a real building can do better or worse. This is general information, not medical advice. After any real exposure, follow public-health instructions.

What this can and cannot tell you