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Published byLiliana Walton Modified over 6 years ago
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STRUCTURAL FEATURE DENSITY PROFILING Hopewell and Flemington Faults
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HFFW BED 21/290 HFHW BED 68/254
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HFFW FRACTURES 72/146 (P), 84/079 and 70/121 (S)
HFHW FRACTURES 51/096 (P), 74/278, 68/162, and 87/317 (S)
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FFFW BED 09/315, FFHW BED 20/045
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FFFW FRACTURES 77/129 (P), 81/066 and 70/102 (S), 75/105 (T)
FFHW FRACTURES 87/263, 78/327, 66/120, 66/038, and 84/064 (S)
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Hopewell cross-section trace angle = 140/320o
NW SE Hopewell Fault 100 100 FR 69 E PASSAIC FM LOCKATONG FM -900 FR 42 E Bed 18 W FR 78 E FR 87 W FR 66 E FR 69 W FT MEAN SEA LEVEL FR 72 E Bed trace PROFILE Explanation Primary fracture trace Subordinate fracture trace Apparent dip (AD) = COT((TAN d) * COS (a)) HFFW BED 21(18)/290 HFHW BED 68(45)/254 A 21 FW N HFFW FRACTURES 72(72)/146 (P); 84(78)/079 and 70(69)/121 (S) HFHW FRACTURES 51(42)/096 (P); 74(69)/278, 68(66)/162, and 87(87)/317 HFFW FRACTURES 72(72)/146 (P), 84(78)/079 and 70(69)/121 (S) HFHW FRACTURES 51(42)/096 (P), 74(69)/278, 68(66)/162, and 87(87)/317 MAP 68 HW A’ Rider Structural Geology GCHERMAN
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Flemington cross-section trace angle = 090/270o
Flemington Fault Splay Fault W E 100 100 LOCKATONG FM -900 -900 PASSAIC FM FT MEAN SEA LEVEL PROFILE Bed trace 2000 ft 1000 Explanation Primary fracture trace Subordinate fracture trace Apparent dip (AD) = COT((TAN d) * COS (a)) FFFW BED 09(06)/315 FFHW BED 20(14)/045 09/315 N MAP FW FFFW FRACTURES (P) 77(73)/129; (S) 81(80)/066, 70(70)/102, and 75/185 FFHW FRACTURES (P) 87(87)/263, 78(69)/327, 60(56)/120, 66(54)/038, and (18)/064. B B’ 20/045 HW Rider Structural Geology GCHERMAN
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