• Member Login
  • |
  • Join Now
PESA - Energy Geoscience

Promoting Professional and Technical Excellence in Energy Geoscience – Networking, On-going Professional Education, Monthly Technical Meetings

  • Home
  • About
    • About PESA
    • Objectives
    • PESA History
    • PESA Affiliates
    • Constitution and Rules
    • Strategic Plan
  • Events
    • Online
    • NSW / ACT
    • QLD
    • SA / NT
    • VIC / TAS
    • WA
    • Industry
    • Social
    • Past Events
  • Membership
    • Join Us
    • APPEA Conference Discounts
    • AEGC 2025 Travel Bursaries
    • PESA Membership Awards
  • Latest News
    • All News
    • Feature Articles
    • Industry
    • Company Updates
    • Tech Talk (public)
    • PESA Branch Activities
  • Library
    • Technical Library
    • PESA Gazette
    • Webinars
    • PESA News Magazine
    • Knowledgette Recordings
  • Scholarships
  • Employment
    • View Job Opportunities
    • Submit Job
  • Contact

The Bight Basin, Evolution & Prospectivity I: gravity, deep seismic & basin morphology

24/09/2021 by Thomas Brand

The Bight Basin, Evolution & Prospectivity I: gravity, deep seismic & basin morphology

 

Download Section

Please log in to download this file.

Alternatively, you can search for this item and individually purchase it from the PESA collection at AAPG DataPages

PESA collection at AAPG DataPages

Publication Name: Australasian Exploration Geoscience Conference 2019

Authors: Jane Cunneen, Chanel DePledge, Sharon Lowe, Kevin Hill, Candice Godfrey, Amanda Buckingham, Rebecca Farrington

Date Published: September 2019

Number of Pages: 4

Abstract:

Definition of the basement architecture within the Ceduna Sub-basin is poorly understood due to the depth of the basin and limited deep crustal geophysical datasets. This study uses seismic interpretation of BightSPAN™ deep crustal seismic lines combined with 2D forward models of the gravity to define the basement architecture in the Ceduna Sub-basin. Gravity forward models identify two depocentres with maximum depths of 25 km overlying thinned continental crust. Syn-rift sedimentary packages are several km thick and underlie up to 10 km of postkinematic Cretaceous deltaic sequences. Regional Moho models contain only sparse data points offshore and isostatic residual gravity data suggests substantial local variation in the depth to Moho. This local variation in the Moho surface is interpreted as boudinage of a weak lower crust along crustal shear zones. A gradual increase in basement density towards the continent-ocean transition suggests a diffuse rather than distinct boundary between continental and oceanic crust.

Tags: AEGC

PESA - Energy Geoscience

PESA Energy Geoscience is a non-profit association of individuals involved in the exploration of oil and gas.

Connect with us

Subscribe to our newsletter and stay on the loop of what is happening in the field of Energy Geoscience and events near you.

pesa newsletter
* indicates required

PESA Energy Geoscience will use the information you provide on this form to be in touch with you and to provide updates and marketing. Please confirm you give us permission to contact you via your email address:

You can change your mind at any time by clicking the unsubscribe link in the footer of any email you receive from us. We will treat your information with respect. For more information about our privacy practices please visit our website. By clicking below, you agree that we may process your information in accordance with these terms.

We use Mailchimp as our marketing platform. By clicking below to subscribe, you acknowledge that your information will be transferred to Mailchimp for processing. Learn more about Mailchimp's privacy practices.

Copyright © 2025 PESA - Energy Geoscience. All Rights Reserved.

  • Advertise
  • Contact
  • Policies
  • Privacy
  • Terms & Conditions