Harbour Mole Submerged Asia 26 — South Korea Region 2
Period Classical·Regional culture Asia-Megalith·🇰🇷 South Korea Region 2, South Korea
About
About Harbour Mole Submerged Asia 26 — South Korea Region 2
Harbour Mole Submerged Asia 26 — South Korea Region 2 in South Korea Region 2, South Korea is a Bronze Age megalithic with stratified deposits and regional significance. Excavations reveal architectural phasing.
Why it mattersKey Regional culture Asia-Megalith megalithic with stratified sequence and regional typology.
Open questions
Mysteries & theories
Mysteries
- 01Astronomical alignment
- 02Function of enclosure
Theories
- 01Ceremonial centre
- 02Observatory
Theories are interpretations, not findings. The seal above tells you how much scholarly weight the place carries.
History
How it came to be
- Built
- c. 3200 BCE
- Period
- Period Classical
- Culture
- Regional culture Asia-Megalith
- Purpose
- megalithic ritual/settlement purpose for Asia-Megalith
- Rediscovered
- Modern excavation 1898
- Excavation
- Excavated
c. 3200 BCE
Initial construction / first occupation at Harbour Mole Submerged Asia 26 — South Korea Region 2
1950 excavation
Modern rediscovery and scientific excavation of Harbour Mole Submerged Asia 26 — South Korea Region 2
c. 200 CE major extension
Major expansion / refurbishment at Harbour Mole Submerged Asia 26 — South Korea Region 2
On the ground
Structures & features
43.6791° N · 138.1930° E · 1810 m · 3 mapped features
Harbour Mole Submerged Asia 26 — South Korea Region 2 — Principal Standing Stone
standing stonestanding stone at Harbour Mole Submerged Asia 26 — South Korea Region 2 — hydraulic feature
43.6778° N · 138.1935° EHarbour Mole Submerged Asia 26 — South Korea Region 2 — Chamber Annex 2
chamberchamber at Harbour Mole Submerged Asia 26 — South Korea Region 2 — subsidiary complex
43.6802° N · 138.1940° EHarbour Mole Submerged Asia 26 — South Korea Region 2 — Southern Cairn
cairncairn at Harbour Mole Submerged Asia 26 — South Korea Region 2 — hydraulic feature
43.6805° N · 138.1947° E