Nonstop flight route between New Philadelphia, Ohio, United States and Charlotte Amalie, Saint Thomas, United States Virgin Islands:
Departure Airport:

Arrival Airport:

Distance from PHD to STT:
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- About this route
- PHD Airport Information
- STT Airport Information
- Facts about PHD
- Facts about STT
- Map of Nearest Airports to PHD
- List of Nearest Airports to PHD
- Map of Furthest Airports from PHD
- List of Furthest Airports from PHD
- Map of Nearest Airports to STT
- List of Nearest Airports to STT
- Map of Furthest Airports from STT
- List of Furthest Airports from STT
About this route:
A direct, nonstop flight between Harry Clever Field (PHD), New Philadelphia, Ohio, United States and Cyril E. King Airport (STT), Charlotte Amalie, Saint Thomas, United States Virgin Islands would travel a Great Circle distance of 1,815 miles (or 2,920 kilometers).
A Great Circle is the shortest distance between 2 points on a sphere. Because most world maps are flat (but the Earth is round), the route of the shortest distance between 2 points on the Earth will often appear curved when viewed on a flat map, especially for long distances. If you were to simply draw a straight line on a flat map and measure a very long distance, it would likely be much further than if you were to lay a string between those two points on a globe. Because of the relatively short distance between Harry Clever Field and Cyril E. King Airport, the route shown on this map most likely still appears to be a straight line.
Departure Airport Information:
IATA / ICAO Codes: | PHD / KPHD |
Airport Name: | Harry Clever Field |
Location: | New Philadelphia, Ohio, United States |
GPS Coordinates: | 40°28'13"N by 81°25'12"W |
Area Served: | New Philadelphia, Ohio |
Operator/Owner: | City of New Philadelphia |
Airport Type: | Public |
Elevation: | 894 feet (272 meters) |
# of Runways: | 2 |
View all routes: | Routes from PHD |
More Information: | PHD Maps & Info |
Arrival Airport Information:
IATA / ICAO Codes: | STT / TIST |
Airport Name: | Cyril E. King Airport |
Location: | Charlotte Amalie, Saint Thomas, United States Virgin Islands |
GPS Coordinates: | 18°20'13"N by 64°58'23"W |
Operator/Owner: | Virgin Islands Port Authority |
Airport Type: | Public |
Elevation: | 23 feet (7 meters) |
# of Runways: | 1 |
View all routes: | Routes from STT |
More Information: | STT Maps & Info |
Facts about Harry Clever Field (PHD):
- Harry Clever Field (PHD) has 2 runways.
- Because of Harry Clever Field's relatively low elevation of 894 feet, planes can take off or land at Harry Clever Field at a lower air speed than at airports located at a higher elevation. This is because the air density is higher closer to sea level than it would otherwise be at higher elevations.
- The closest airport to Harry Clever Field (PHD) is Wayne County Airport (BJJ), which is located 37 miles (60 kilometers) NW of PHD.
- The furthest airport from Harry Clever Field (PHD) is Margaret River Airport (MGV), which is located 11,424 miles (18,385 kilometers) away in Margaret River, Western Australia, Australia.
Facts about Cyril E. King Airport (STT):
- The closest airport to Cyril E. King Airport (STT) is Charlotte Amalie Harbor Seaplane Base (SPB), which is located only 2 miles (3 kilometers) E of STT.
- Cyril E. King Airport (STT) currently has only 1 runway.
- During World War II, the United States Army Air Forces Sixth Air Force 23rd Fighter Squadron deployed P-40 Warhawk fighters to the airport from March 1942 – May 1943.
- The airport operates one main runway, 7,000 ft × 150 ft long.
- The furthest airport from Cyril E. King Airport (STT) is Barrow Island Airport (BWB), which is nearly antipodal to Cyril E. King Airport (meaning Cyril E. King Airport is almost on the exact opposite side of the Earth from Barrow Island Airport), and is located 12,260 miles (19,731 kilometers) away in Barrow Island, Western Australia, Australia.
- Because of Cyril E. King Airport's relatively low elevation of 23 feet, planes can take off or land at Cyril E. King Airport at a lower air speed than at airports located at a higher elevation. This is because the air density is higher closer to sea level than it would otherwise be at higher elevations.