Wet Bulb Globe Temperature WBGT Calculator for US Outdoor Safety
The most complete free WBGT calculator in the United States. Three input modes: outdoor estimated (temperature, humidity, wind, cloud cover), indoor estimated, or full direct 3-thermometer entry. Four threshold frameworks in one view: US Military flag conditions (Army TB MED 507), NIOSH 2016 work-rest limits, NFHS youth sports flags (2024-25 season), and the OSHA proposed heat rule (2025-2026). Includes the Stull (2011) wet-bulb formula, globe temperature estimate, heat index comparison, clothing corrections, and NIOSH work-rest schedule by workload level.
Enter temperature and humidity to instantly compute WBGT and see all four US threshold frameworks: Military flags, NIOSH work-rest limits, NFHS sports flags, and the OSHA proposed heat rule.
Wet Bulb Globe Temperature: The Heat Stress Index That Runs the US Military, High School Athletics, and Outdoor Worker Safety
Every August morning, industrial hygienists at construction sites from Phoenix to Houston perform a WBGT reading before the first crew steps outdoors. Coaches at high school football practices from Florida to Georgia consult WBGT-based flag charts to decide whether players can wear full pads. US Army drill sergeants at Fort Benning monitor WBGT instruments to determine when training must stop entirely. The reason they all use WBGT rather than a simple thermometer is that WBGT answers a fundamentally different question. A thermometer tells you how hot the air is. WBGT tells you how hard your body has to work to stay cool in that air, in the sun, in your clothes, at your activity level. That distinction is the difference between a number on a display and actionable safety intelligence.
WBGT was developed in the 1950s by Yaglou and Minard at the Naval Medical Research Institute after the US military experienced significant heat casualties during summer training at bases in the American South and Tropics. Their 1957 paper in the AMA Archives of Industrial Health introduced the composite index that weighted three distinct heat load measurements: the natural wet bulb temperature capturing evaporative cooling limitation (the humidity effect on sweat), the black globe temperature capturing radiant heat from direct sun and hot surfaces, and the dry bulb temperature capturing the ambient air temperature itself. By weighting these three inputs at 70 percent, 20 percent, and 10 percent respectively, Yaglou and Minard created an index that correlated significantly better with heat casualty rates than air temperature alone. That formula, unchanged in its fundamental weights since 1957 and now codified in ISO 7243:2017, remains the gold standard for outdoor heat stress assessment worldwide.
Why WBGT Is More Protective Than the Heat Index
The NWS Heat Index, which most Americans see in weather apps as the “feels like” temperature, uses only air temperature and relative humidity. It was designed for shaded conditions and does not include any measure of radiant heat load from direct sunlight. On a sunny August afternoon at a football practice field, the difference between the Heat Index and the outdoor WBGT can be 10 to 15 degrees Fahrenheit, because the black globe thermometer used in WBGT measurement absorbs the same solar radiation that a player’s skin absorbs when standing in direct sunlight, while the Heat Index calculation assumes a shaded environment. NIOSH’s 2016 study of 25 occupational heat-related illness cases documented by OSHA found that a Heat Index threshold of 85°F correlated with potentially hazardous WBGT levels when a direct WBGT measurement was not available, but cautioned that using heat index as a surrogate for WBGT may not be sufficiently protective for all workers, particularly those in direct sunlight performing strenuous work.
How This WBGT Calculator Works: Formulas, Methods, and Sources Explained
The Three-Thermometer System and the Standard Formulas
The true WBGT measurement requires three specialized thermometers, each measuring a distinct environmental heat load on the human body. Understanding what each measures helps explain why estimated or simplified WBGT calculators (like this one in outdoor estimated mode) are useful for planning but not for regulatory compliance.
WBGT_outdoor = 0.7 * T_NWB + 0.2 * T_globe + 0.1 * T_db
/* INDOOR/SHADE WBGT (ISO 7243:2017) – solar component absent */
WBGT_indoor = 0.7 * T_NWB + 0.3 * T_globe
/* NATURAL WET BULB ESTIMATE (Stull 2011, BAMS 50(11):2267-2269) */
T_NWB = T * atan[0.151977*(RH+8.313659)^0.5]
+ atan(T + RH)
– atan(RH – 1.676331)
+ 0.00391838 * RH^1.5 * atan(0.023101*RH)
– 4.686035
/* Valid: 5°C < T < 40°C, 5% < RH < 99%. Error < 0.5°C */
/* GLOBE TEMPERATURE ESTIMATE (simplified; measurement required for compliance) */
T_globe = T_db + solar_factor * 15 – 2.5 * v_ms
/* solar_factor: 0.0 (overcast) to 1.0 (clear noon sun) */
/* At solar noon clear sky: globe typically 10-15°C above dry bulb */
/* HEAT INDEX (NWS Rothfusz 1990, SR 90-23; for comparison only) */
HI = -42.379 + 2.04901523*T_F + 10.14333127*RH
– 0.22475541*T_F*RH – 0.00683783*T_F^2
– 0.05391317*RH^2 + 0.00122874*T_F^2*RH
+ 0.00085282*T_F*RH^2 – 0.00000199*T_F^2*RH^2
/* T_F in Fahrenheit; valid for HI > 80°F */
Wet Bulb vs Natural Wet Bulb vs Psychrometric Wet Bulb: What This Calculator Uses
The WBGT standard specifies the “natural wet bulb temperature,” which is measured by a wick-covered thermometer that is NOT shielded from radiation and NOT fan-aspirated. This differs from the psychrometric wet bulb measured in a sling psychrometer (which is ventilated) and from the aspirated wet bulb used in Stevenson screens. The natural wet bulb temperature is affected by solar radiation and natural air movement, making it a better proxy for human sweat evaporation in outdoor conditions. The Stull (2011) formula used in this calculator estimates wet bulb from temperature and humidity alone, which corresponds most closely to the psychrometric wet bulb. For outdoor settings with significant solar radiation, the natural wet bulb temperature may be 1-2°C higher than the Stull estimate. This is one reason why estimated WBGT from weather inputs consistently underestimates measured WBGT, and why on-site measurement with a properly configured instrument is required for compliance purposes. For planning, educational, and general safety awareness purposes, this estimated WBGT is a valuable tool that is significantly more informative than temperature or heat index alone.
Verified US Government and Sports Organization WBGT Thresholds (2024-2026)
US Military Flag Conditions (Army TB MED 507, 2022; HPRC, verified 2024)
| Flag | WBGT (°F) | WBGT (°C) | Water Intake | Moderate Work Guidance | Heavy Work Guidance |
|---|---|---|---|---|---|
| White | < 82°F | < 27.8°C | 0.5 qt/hr | Normal training. Heat awareness required. | Normal. Use buddy system in unfamiliar personnel. |
| Green | 82-84.9°F | 27.8-29.3°C | 0.5 qt/hr | Intense exercise caution. Limit to 45 min heavy work / hr. | Stop/rest 15 min per hr for unacclimatized personnel. |
| Yellow | 85-87.9°F | 29.4-31.0°C | 0.75 qt/hr | Strenuous exercise caution. Rest 20 min/hr minimum. | Stop/rest 40 min per hr. Limit to 20 min of heavy work. |
| Red | 88-89.9°F | 31.1-32.1°C | 0.75 qt/hr | Limit strenuous exercise. Rest 20 min minimum per hr. | No heavy training. Limit to essential duty tasks only. |
| Black | >= 90°F | >= 32.2°C | 1.0 qt/hr | Limit all exercise to essential mission tasks only. | No strenuous activity. Suspend all non-essential training. |
Source: US Army (2022). TB MED 507: Heat Stress Control and Heat Casualty Management. Defense Health Agency, Washington DC. HPRC Human Performance Resource Center (hprc-online.org) Military Heat Flag Conditions, verified 2024.
NFHS Youth Sports Flags (NFHS 2024-25 Season; ACSM; FHSAA 2025-26 Bylaws)
| WBGT Level | WBGT (°F) | WBGT (°C) | Activity Allowed | Equipment Restrictions | Rest Requirements |
|---|---|---|---|---|---|
| Normal | < 82°F | < 28°C | Normal practice | All equipment permitted | Normal hydration monitoring; watch high-risk athletes |
| Yellow | 82-86.9°F | 28-30.5°C | Full practice with precautions | All equipment; monitor closely | Mandatory rest and hydration breaks; increase frequency |
| Orange | 87-89.9°F | 30.6-32.2°C | Maximum 2 hours total activity | Football: helmet only (no shoulder pads or body pads) | Four 4-minute rest breaks per hour minimum (FHSAA 2025-26) |
| Red | 90-92°F | 32.3-33.3°C | Maximum 1 hour of activity | No protective equipment permitted; no conditioning drills | Five 4-minute rest breaks per hour minimum |
| Black | > 92°F | > 33.3°C | No outdoor activity | Cancel or postpone all outdoor practice and competition | Move all activities indoors or postpone |
Sources: NFHS Heat Illness Prevention Guidelines (nfhs.org); American College of Sports Medicine heat guidelines for youth football; Florida High School Athletic Association (FHSAA) Bylaws 2025-26; ACSM Position Stand on Exertional Heat Illness Prevention.
NIOSH 2016 Work-Rest Limits (Publication No. 2016-106; CDC/NIOSH)
| Workload | kcal/hr | RAL (Unacc.) °F/°C | REL (Acc.) °F/°C | Examples | Clothing Adjustment |
|---|---|---|---|---|---|
| Light | <200 | 86°F / 30°C | 95°F / 35°C | Seated work, walking slowly, light assembly tasks | Standard (+0°C) |
| Moderate | 200-350 | 82°F / 28°C | 86°F / 30°C | Walking 3.5 mph, light carpentry, machine tending | Coveralls (+3°C) |
| Heavy | 350-500 | 77°F / 25°C | 82°F / 28°C | Heavy construction, sustained digging, heavy shoveling | Double-layer (+5°C) |
| Very Heavy | >500 | 75°F / 23.9°C | 79°F / 26.1°C | Maximum effort lifting, fast climbing, combat exercise | Impermeable (+10°C) |
RAL = Recommended Alert Limit (unacclimatized workers); REL = Recommended Exposure Limit (acclimatized workers). Source: NIOSH (2016). Criteria for a Recommended Standard: Occupational Exposure to Heat and Hot Environments. DHHS (NIOSH) Publication No. 2016-106. Cincinnati, OH: U.S. Department of Health and Human Services, CDC/NIOSH. Available at cdc.gov/niosh/docs/2016-106/.
OSHA Proposed Heat Rule Status (2025-2026)
| Trigger Level | Heat Index Threshold | Comparable WBGT | Required Employer Actions | Status |
|---|---|---|---|---|
| Initial Heat Trigger | >= 80°F Heat Index | NIOSH RAL equivalent | Water access (cold preferred), rest breaks in shade, heat illness training, acclimatization plan for new workers, emergency response procedures | Proposed Rule (2025) |
| High Heat Trigger | >= 90°F Heat Index | NIOSH REL equivalent | Above plus: mandatory 15-min paid rest per hour, buddy system monitoring, closer supervisor oversight, emergency medical plan on site | Proposed Rule (2025) |
| Current legal basis | Any temperature with recognized heat hazard | Any WBGT level | General Duty Clause: Employers must address recognized hazards likely to cause death or serious harm | In force (OSHA.gov, 2025) |
Source: OSHA Heat Injury and Illness Prevention in Work Settings. Proposed Rule, Docket OSHA-2021-0009. Rulemaking hearing completed 2025. Finalization expected late 2025 or 2026. See osha.gov/heat-exposure for current status.
Three Real US WBGT Examples: Phoenix, Houston, and a Chicago Outdoor Event
Desert Heat and the BLACK Flag: When Arizona High School Football Must Stop
A high school football coach in the Scottsdale Unified School District is scheduling the first August two-a-day practice session. In the desert climate of the Phoenix metropolitan area, afternoon temperatures in August routinely reach 108 to 112°F with relative humidity of 20 to 30 percent during the dry season, rising to 40 to 55 percent during the summer monsoon pattern. At 9 AM, before the sun reaches peak intensity, the coach takes a WBGT reading to determine what equipment restrictions and rest schedule apply per Arizona Interscholastic Association guidelines.
Relative humidity: 28%
Wind speed: 6 mph = 2.7 m/s
Sky condition: Clear sky (pre-noon)
Stull (2011) natural wet bulb estimate:
T_NWB = 36.7 * atan(0.151977*(28+8.313659)^0.5) + … = 21.3°C
Globe temp estimate (solar factor 0.80; clear pre-noon):
T_globe = 36.7 + 0.80*15 – 2.5*2.7 = 36.7 + 12.0 – 6.75 = 41.95°C
WBGT_outdoor = 0.7*21.3 + 0.2*41.95 + 0.1*36.7
= 14.91 + 8.39 + 3.67 = 26.97°C = 80.5°F
By 11 AM as sun intensifies (solar factor 1.0, temp rises to 106°F):
T_NWB ~ 22.1°C, T_globe ~ 47.2°C, T_db = 41.1°C
WBGT = 0.7*22.1 + 0.2*47.2 + 0.1*41.1 = 15.47+9.44+4.11 = 29.0°C = 84.2°F
Military flag: GREEN | NFHS: Yellow (approaching 82°F)
Moderate Work in High Humidity: OSHA High Heat Trigger and NIOSH REL Exceeded
A construction site supervisor in the Houston metropolitan area is responsible for a crew of 14 roofers working on a commercial building project. Houston’s August climate features air temperatures of 94 to 99°F with relative humidity of 65 to 80 percent, creating some of the most oppressive heat conditions in the continental United States. At 10 AM, before the hottest part of the day, the supervisor measures conditions using the site WBGT instrument and must decide whether OSHA’s General Duty Clause and NIOSH guidelines require work modification.
Relative humidity: 72%
Wind speed: 4 mph = 1.8 m/s
Sky condition: Mostly clear (solar factor 0.80)
Workload: Heavy (roofing, 350-500 kcal/hr)
Clothing: Standard 1-layer work clothing (+0°C adjustment)
Worker status: Mixed acclimatized and new workers
T_NWB (Stull 2011): 35.6°C, RH=72%
= 35.6*atan(0.151977*8.969) + … = 30.0°C
T_globe = 35.6 + 0.80*15 – 2.5*1.8 = 35.6+12.0-4.5 = 43.1°C
WBGT_outdoor = 0.7*30.0 + 0.2*43.1 + 0.1*35.6
= 21.0 + 8.62 + 3.56 = 33.2°C = 91.7°F
Military flag: BLACK (>= 90°F)
NFHS: N/A (occupational)
NIOSH Heavy RAL (unacclimatized): 77°F = 25°C EXCEEDED by +8.2°C
NIOSH Heavy REL (acclimatized): 82°F = 28°C EXCEEDED by +5.2°C
Heat Index (NWS Rothfusz): HI = 128.4°F (extreme danger)
Event Medical Planning: WBGT for Crowd Safety at a Summer Festival
A medical director for a major outdoor music festival in Chicago’s Grant Park is preparing the heat illness response plan for a late-July weekend when 40,000 attendees are expected across multiple outdoor stages. While Chicago’s temperatures are moderate compared to the Gulf Coast, the combination of temperatures in the upper 80s, high humidity from Lake Michigan, direct solar exposure on open festival grounds, and the physical exertion of standing, walking, and dancing creates meaningful heat stress risk. The medical director uses WBGT to establish thresholds for increasing medical station staffing and activating cooling areas.
Relative humidity: 63%
Wind speed: 8 mph = 3.6 m/s (lake breeze)
Sky condition: Mostly clear afternoon (solar factor 0.80)
Activity: Festival attendance – very light to light (100-200 kcal/hr)
T_NWB (Stull): 31.7°C, RH=63% = 25.8°C
T_globe = 31.7 + 0.80*15 – 2.5*3.6 = 31.7+12.0-9.0 = 34.7°C
WBGT_outdoor = 0.7*25.8 + 0.2*34.7 + 0.1*31.7
= 18.06 + 6.94 + 3.17 = 28.17°C = 82.7°F
Military flag: GREEN (82-85°F)
NFHS equivalent: Yellow (82-87°F range)
NIOSH Light REL (acclimatized): 35°C – OK
NIOSH Light RAL (unacclimatized): 30°C – WBGT 28.2°C is OK but close
Heat Index (NWS): 97.4°F (Caution/Extreme Caution boundary)
Six Expert Tips for WBGT-Based Heat Stress Management in the United States
Every reputable WBGT estimator, including this one, consistently produces values that are 3 to 8 degrees Fahrenheit lower than measured WBGT at the same location under the same conditions. This is because the natural wet bulb thermometer used in true WBGT measurement is exposed to solar radiation and therefore reads higher than the Stull formula estimate, which is calibrated to psychrometric conditions. Additionally, the black globe thermometer in direct sun can read 15 to 20°F above air temperature, while the web calculator’s solar load estimation is a rough approximation. OSHA’s own WBGT calculator explicitly states it uses the Liljegren (2008) heat and mass transfer algorithm, which is more sophisticated than the simplified globe temperature estimate used here, and still notes that it provides estimates rather than compliance measurements. For any situation where NIOSH RAL/REL compliance documentation is required, an actual on-site WBGT measurement with a calibrated instrument is mandatory. Handheld WBGT instruments from manufacturers such as Kestrel, QUESTemp, and AEM are available for $200-$600 and are the correct tools for compliance purposes. This calculator is the right tool for planning, training, general awareness, and educational purposes.
The NIOSH 2016 publication makes a distinction that many employers miss: the Recommended Alert Limit (RAL) applies to unacclimatized workers, while the higher Recommended Exposure Limit (REL) applies to acclimatized workers. For heavy work, the difference between RAL and REL is 7 degrees Fahrenheit (25°C RAL vs 28°C REL). A worker who is new, returning from vacation, or beginning work in a new climate is unacclimatized and must be treated to the lower RAL standard. Full acclimatization to heat exposure typically takes 10 to 14 days of gradual, progressive exposure to heat stress. OSHA’s proposed heat rule and the Army TB MED 507 both require formal acclimatization programs, specifying that new and returning workers should not be exposed to full heat stress conditions on their first day. NIOSH recommends starting new workers at no more than 20 percent of normal exposure time on day one and increasing by 20 percent per day over the first week. Coaches, site supervisors, and industrial hygienists should track acclimatization status for every worker and apply the appropriate threshold accordingly.
A common and dangerous error in youth sports heat safety is using the shade WBGT reading from a sideline instrument to make decisions for athletes performing in direct sunlight on the playing field. The outdoor WBGT formula (70% natural wet bulb, 20% globe, 10% dry bulb) requires the instrument to be placed in direct sunlight in the same location where athletes are practicing, at the same height as their bodies. A WBGT meter in the shade of a press box or under a sideline canopy will read significantly lower than the same instrument in the sun on the field. The NFHS and ACSM guidelines specifically require on-field measurement in direct sun for youth sports. Perry Weather’s commercial WBGT monitoring system places sensors in direct sunlight on the field for exactly this reason. When in doubt, assume the sun-exposed WBGT is 8 to 12 degrees Fahrenheit higher than the shaded reading, and apply the more conservative threshold accordingly.
The NIOSH 2016 clothing and PPE correction factors are among the most commonly overlooked elements of WBGT-based heat stress management. A worker wearing a single-layer cloth coverall over standard clothing operates at an effectively 3°C (5.4°F) higher WBGT than the environmental measurement suggests. A worker in an impermeable Tyvek or chemical hazmat suit is effectively exposed to WBGT 10°C (18°F) higher than the environmental measurement. This means a worker in full impermeable PPE at an environmental WBGT of 22°C (72°F) is experiencing the physiological equivalent of an unprotected worker at 32°C (90°F), which is Military BLACK flag territory. OSHA’s guidance and the ACGIH 2025 TLVs both require these corrections to be applied when calculating effective WBGT for compliance assessment. This calculator applies the correction automatically when you select the clothing type, with the adjusted WBGT displayed prominently in all threshold assessments.
Both OSHA’s General Duty Clause guidance on heat illness and the NFHS heat illness prevention standards explicitly require that heat safety plans be developed and practiced before the heat season begins, not improvised in real time. A complete WBGT-based heat safety plan for an outdoor worksite or athletic program should include at minimum: designated shelter locations with measured distances and travel times from each work or practice area, a clear threshold matrix specifying what actions are required at each WBGT level for each workload or activity type, a named individual responsible for WBGT monitoring and the authority to stop work, a communication protocol that does not depend on the supervisor being present, written acclimatization schedules for new workers or athletes, emergency response procedures including cold water immersion availability (the most effective treatment for exertional heat stroke), and contact information for emergency services. The CDC has documented that heat stroke fatalities consistently involve a delay in aggressive cooling, which is why the American College of Sports Medicine recommends that “cold water immersion tubs should be at every practice facility where heat stroke is a risk.” Practice medical staff and athletic trainers should know how to prepare an immersion tub and begin cooling before EMS arrives.
WBGT is not a fixed value that can be looked up in a weather app for the day: it changes significantly as solar angle, cloud cover, humidity, and wind change throughout the day. In many US climates, WBGT rises steeply between 9 AM and 1 PM as solar intensity increases, and then may drop moderately in late afternoon as afternoon breezes pick up. A morning WBGT reading of 78°F at 8 AM in Atlanta can become 92°F by 1 PM simply from the change in solar elevation and temperature, without any significant change in humidity or wind. This is why NFHS guidelines and Army TB MED 507 both specify ongoing monitoring throughout the practice or work session, not just a single reading at the start. NIOSH recommends WBGT monitoring frequency of at least every 30 minutes when workers are operating near threshold limits, and continuously when operating above threshold limits. Commercial WBGT monitoring systems used by major athletic programs and industrial sites provide continuous real-time readings and automated alerts when flag thresholds are crossed. For sites without continuous monitoring, the practical minimum is to take readings at the start of each hour of work or practice, and to assume conditions may be worse than the reading if solar exposure, activity level, or wind conditions change.
Quick Reference: WBGT Formulas, Frameworks, and Key US Standards
| Formula / Standard | Value | Application | Source |
|---|---|---|---|
| Outdoor WBGT | 0.7 NWB + 0.2 Globe + 0.1 Dry | All outdoor settings in direct sunlight | Yaglou and Minard (1957); ISO 7243:2017 |
| Indoor WBGT | 0.7 NWB + 0.3 Globe | Indoor or shade settings (no solar) | ISO 7243:2017; AIHA |
| Stull wet bulb estimate | T*atan formula from T and RH | Estimating NWB from weather data | Stull (2011) BAMS 50(11):2267-2269 |
| Military Black Flag | WBGT >= 90°F (32.2°C) | Suspend all non-essential training | US Army TB MED 507 (2022) |
| Military Red Flag | WBGT 88-89.9°F | Strenuous exercise limited; rest 40+ min/hr | US Army TB MED 507 (2022) |
| NFHS Sports Black | WBGT > 92°F (33.3°C) | No outdoor activity; cancel/postpone | NFHS 2024-25; ACSM |
| NIOSH Heavy Work RAL | WBGT 77°F (25°C) unacclimatized | Unacclimatized heavy workers must stop/modify | NIOSH Pub 2016-106 |
| NIOSH Moderate Work REL | WBGT 86°F (30°C) acclimatized | Acclimatized moderate workers limit | NIOSH Pub 2016-106 |
| OSHA Initial Trigger | Heat Index >= 80°F or NIOSH RAL | Water, shade, rest breaks, acclimatization | OSHA Proposed Rule (2025) |
| OSHA High Heat Trigger | Heat Index >= 90°F or NIOSH REL | Mandatory 15-min paid rest per hour, buddy system | OSHA Proposed Rule (2025) |
| Clothing correction (coveralls) | +3°C to WBGT | Cloth woven coveralls over standard clothing | NIOSH 2016-106; ACGIH TLVs 2025 |
| Clothing correction (impermeable) | +10°C to WBGT | Tyvek or chemical hazmat suits | NIOSH 2016-106; ACGIH TLVs 2025 |
| Acclimatization full period | 10-14 days | Progressive exposure required for REL protection | NIOSH 2016-106; Army TB MED 507 |
| Heat stroke cooling target | Reduce core temp to 102°F in 30 min | Cold water immersion is most effective (ACSM) | ACSM Position Stand; NFHS |
16 Frequently Asked Questions About WBGT and Heat Stress Safety
Related Weather Hub and Safety Calculators
WBGT is the final piece of a complete atmospheric safety toolkit. These Weather Hub calculators provide essential context for complete outdoor safety assessment.
This calculator is provided for educational, planning, and general awareness purposes only. The WBGT outdoor formula (0.7 NWB + 0.2 Globe + 0.1 Dry) follows Yaglou and Minard (1957) as codified in ISO 7243:2017 and NIOSH Pub 2016-106. The indoor formula follows ISO 7243:2017. The wet-bulb temperature estimate uses the Stull (2011) formula (BAMS 50(11):2267-2269) and the globe temperature estimate uses a simplified solar-load model that is not equivalent to a calibrated black globe thermometer. Estimated WBGT from weather inputs will typically be 3 to 8°F lower than actual measured WBGT in direct sunlight. Military threshold data from US Army TB MED 507 (2022) as summarized by HPRC (hprc-online.org, verified 2024). NIOSH thresholds from NIOSH Pub No. 2016-106 (CDC/NIOSH, 2016). NFHS sports thresholds from NFHS Heat Illness Prevention guidelines and FHSAA 2025-26 Bylaws. OSHA proposed rule status from OSHA Docket OSHA-2021-0009 (2025). Clothing corrections from NIOSH 2016-106 and ACGIH TLVs 2024-2025. For any situation where OSHA compliance documentation, NIOSH RAL/REL compliance determination, ACGIH TLV assessment, or athletic safety decisions are required, on-site measurement with a calibrated WBGT instrument is mandatory and this calculator cannot substitute for that measurement. USCalculators.com is not affiliated with NIOSH, OSHA, the US Army, the NFHS, ACSM, or ISO. Always consult a certified industrial hygienist or occupational health professional for workplace heat stress compliance programs. Last reviewed: 2026.