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Structure of the Southern Canadian Rocky Mountain Foreland and Western San Joaquin Basin Fold-and-Thrust Belts
Structure of the Southern Canadian Rocky Mountain Foreland and Western San Joaquin Basin F...
Structure of the Southern Canadian Rocky Mountain Foreland and Western San Joaquin Basin Fold-and-Thrust Belts

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자료유형  
 학위논문 서양
최종처리일시  
20260202103554
ISBN  
9798280717206
DDC  
551
저자명  
Welch, Robert Marquand.
서명/저자  
Structure of the Southern Canadian Rocky Mountain Foreland and Western San Joaquin Basin Fold-and-Thrust Belts
발행사항  
[Sl] : Harvard University, 2025
발행사항  
Ann Arbor : ProQuest Dissertations & Theses, 2025
형태사항  
235 p
주기사항  
Source: Dissertations Abstracts International, Volume: 86-12, Section: B.
주기사항  
Advisor: Shaw, John H.
학위논문주기  
Thesis (Ph.D.)--Harvard University, 2025.
초록/해제  
요약This thesis investigates the geometry and kinematic evolution of fold-and-thrust belts from tectonic to human timescales in the Front Ranges of the Southern Canadian Rocky Mountains and the South-Central San Joaquin Valley of California. Findings advance the field's capabilities for developing internally consistent 2D and 3D models of both ancient and active fold and thrust belts and have important implications for earthquake hazards in California.In chapter one, we investigate the geometry and kinematic evolution of the Southern Front Ranges of the Canadian Rockies, and orogen that formed over tens of millions of years associated with subduction of the Pacific Plate and accretion of tectonic terrains to western North America. Due to its spectacular field exposures, this mountain belt has long served as a prototypical example of a thin-skinned fold-and-thrust belt. Nevertheless, many questions remain unanswered regarding its detailed structure and kinematic evolution. In conjunction with 10 m and 1 m/pixel digital elevation models, high-resolution satellite imagery enables unparalleled quantitative definition of the fold geometry and bedding-fault relationships in the Front Ranges. Using these fundamental quantitative relationships, we develop a series of new, kinematically viable cross sections and 3D models that both reinforce, and in some cases overturn, previous paradigms about this fold and thrust belt. Traditionally, the region is thought to contain a single basal detachment and develop through a break forward sequence of thrusting. Our analysis shows that this fold and thrust belt is underlain by multiple basal detachments and developed through a complex sequence of thrusting that fundamentally controls the map patterns expressed within the Front Ranges. The methods we develop for remote data collection and analysis can be applied to develop and refine interpretations of fold and thrust belts worldwide.Chapters two and three investigate the geometry and seismic hazards associated with Central California's active Southern San Joaquin Fold and Thrust Belt. In Chapter 2, we develop an internally consistent structural model for the system of blind-thrust faults and their overlying, en-echelon anticlines. Portions of these faults generated a series of Mw 5.5-6.5 earthquakes in the 1980s, yet the activity and earthquake potential of along-strike and down dip segments of the system remain uncertain. Our model reveals that the fold changes along strike from a structural wedge to a composite growth fault-bend fold. The wedge locally consumes much of the slip on the underlying blind thrust fault, whereas the fault-bend folds send slip eastward into the basin on an upper detachment surface. Consistent with this, we observe distinct variations in the eastern extent of deformation in the basin. Specifically, slip into the basin on the upper detachment is manifest in both fault-related folds and additional thrust ramps. To the west and at depth, these fault segments sole to two primary basal detachment levels that extend beneath the Temblor Ranges.In chapter three, we couple the structural model from chapter two with groundwater wells to determine the activity of various segments of the Southern San Joaquin Fold and Thrust Belt. We find that sediments of late Pleistocene age are folded through active axial surfaces above each of the major blind-thrust segments. Our observation indicates that the entire system of ramps and detachments in this fold and thrust belt are active. Based on the size of the fault system, it is capable of generating Mw ≈7.7 earthquakes. We additionally identify new active thrust faults in the basin that have the potential to generate damaging earthquakes.
일반주제명  
Geology
일반주제명  
Geophysics
일반주제명  
Geological engineering
키워드  
Earthquakes
키워드  
Faults
키워드  
Folding
키워드  
Kinematics
키워드  
Fold and thrust belts
기타저자  
Harvard University Earth and Planetary Sciences
기본자료저록  
Dissertations Abstracts International. 86-12B.
전자적 위치 및 접속  
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MARC

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■1001  ▼aWelch,  Robert  Marquand.▼0(orcid)0009-0003-3932-6593
■24510▼aStructure  of  the  Southern  Canadian  Rocky  Mountain  Foreland  and  Western  San  Joaquin  Basin  Fold-and-Thrust  Belts
■260    ▼a[Sl]▼bHarvard  University▼c2025
■260  1▼aAnn  Arbor▼bProQuest  Dissertations  &  Theses▼c2025
■300    ▼a235  p
■500    ▼aSource:  Dissertations  Abstracts  International,  Volume:  86-12,  Section:  B.
■500    ▼aAdvisor:  Shaw,  John  H.
■5021  ▼aThesis  (Ph.D.)--Harvard  University,  2025.
■520    ▼aThis  thesis  investigates  the  geometry  and  kinematic  evolution  of  fold-and-thrust  belts  from  tectonic  to  human  timescales  in  the  Front  Ranges  of  the  Southern  Canadian  Rocky  Mountains  and  the  South-Central  San  Joaquin  Valley  of  California.  Findings  advance  the  field's  capabilities  for  developing  internally  consistent  2D  and  3D  models  of  both  ancient  and  active  fold  and  thrust  belts  and  have  important  implications  for  earthquake  hazards  in  California.In  chapter  one,  we  investigate  the  geometry  and  kinematic  evolution  of  the  Southern  Front  Ranges  of  the  Canadian  Rockies,  and  orogen  that  formed  over  tens  of  millions  of  years  associated  with  subduction  of  the  Pacific  Plate  and  accretion  of  tectonic  terrains  to  western  North  America.  Due  to  its  spectacular  field  exposures,  this  mountain  belt  has  long  served  as  a  prototypical  example  of  a  thin-skinned  fold-and-thrust  belt.  Nevertheless,  many  questions  remain  unanswered  regarding  its  detailed  structure  and  kinematic  evolution.  In  conjunction  with  10  m  and  1  m/pixel  digital  elevation  models,  high-resolution  satellite  imagery  enables  unparalleled  quantitative  definition  of  the  fold  geometry  and  bedding-fault  relationships  in  the  Front  Ranges.  Using  these  fundamental  quantitative  relationships,  we  develop  a  series  of  new,  kinematically  viable  cross  sections  and  3D  models  that  both  reinforce,  and  in  some  cases  overturn,  previous  paradigms  about  this  fold  and  thrust  belt.  Traditionally,  the  region  is  thought  to  contain  a  single  basal  detachment  and  develop  through  a  break  forward  sequence  of  thrusting.  Our  analysis  shows  that  this  fold  and  thrust  belt  is  underlain  by  multiple  basal  detachments  and  developed  through  a  complex  sequence  of  thrusting  that  fundamentally  controls  the  map  patterns  expressed  within  the  Front  Ranges.  The  methods  we  develop  for  remote  data  collection  and  analysis  can  be  applied  to  develop  and  refine  interpretations  of  fold  and  thrust  belts  worldwide.Chapters  two  and  three  investigate  the  geometry  and  seismic  hazards  associated  with  Central  California's  active  Southern  San  Joaquin  Fold  and  Thrust  Belt.  In  Chapter  2,  we  develop  an  internally  consistent  structural  model  for  the  system  of  blind-thrust  faults  and  their  overlying,  en-echelon  anticlines.  Portions  of  these  faults  generated  a  series  of  Mw  5.5-6.5  earthquakes  in  the  1980s,  yet  the  activity  and  earthquake  potential  of  along-strike  and  down  dip  segments  of  the  system  remain  uncertain.  Our  model  reveals  that  the  fold  changes  along  strike  from  a  structural  wedge  to  a  composite  growth  fault-bend  fold.  The  wedge  locally  consumes  much  of  the  slip  on  the  underlying  blind  thrust  fault,  whereas  the  fault-bend  folds  send  slip  eastward  into  the  basin  on  an  upper  detachment  surface.  Consistent  with  this,  we  observe  distinct  variations  in  the  eastern  extent  of  deformation  in  the  basin.  Specifically,  slip  into  the  basin  on  the  upper  detachment  is  manifest  in  both  fault-related  folds  and  additional  thrust  ramps.  To  the  west  and  at  depth,  these  fault  segments  sole  to  two  primary  basal  detachment  levels  that  extend  beneath  the  Temblor  Ranges.In  chapter  three,  we  couple  the  structural  model  from  chapter  two  with  groundwater  wells  to  determine  the  activity  of  various  segments  of  the  Southern  San  Joaquin  Fold  and  Thrust  Belt.  We  find  that  sediments  of  late  Pleistocene  age  are  folded  through  active  axial  surfaces  above  each  of  the  major  blind-thrust  segments.  Our  observation  indicates  that  the  entire  system  of  ramps  and  detachments  in  this  fold  and  thrust  belt  are  active.  Based  on  the  size  of  the  fault  system,  it  is  capable  of  generating  Mw  ≈7.7  earthquakes.  We  additionally  identify  new  active  thrust  faults  in  the  basin  that  have  the  potential  to  generate  damaging  earthquakes.
■590    ▼aSchool  code:  0084.
■650  4▼aGeology
■650  4▼aGeophysics
■650  4▼aGeological  engineering
■653    ▼aEarthquakes
■653    ▼aFaults
■653    ▼aFolding
■653    ▼aKinematics
■653    ▼aFold  and  thrust  belts
■690    ▼a0372
■690    ▼a0373
■690    ▼a0467
■690    ▼a0466
■71020▼aHarvard  University▼bEarth  and  Planetary  Sciences.
■7730  ▼tDissertations  Abstracts  International▼g86-12B.
■790    ▼a0084
■791    ▼aPh.D.
■792    ▼a2025
■793    ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T17357744▼nKERIS▼z이  자료의  원문은  한국교육학술정보원에서  제공합니다.

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