Training Course :Seismic Data Acquisition Program

iOpener Training
OI3009
Geneva
Monday, 13 Jul 2026 - Friday, 17 Jul 2026
Price: 4900

Executive Summary

The Seismic Data Acquisition Program is a five-day theoretical training course designed to provide participants with a solid foundation in land seismic acquisition principles. The program focuses on the nature of seismic waves, their propagation, and their role in subsurface imaging. It explains how seismic energy is generated, transmitted, reflected, and recorded during land seismic surveys. Special emphasis is placed on acquisition methods, equipment, survey geometry, and near-surface effects. The course also addresses seismic noise and its impact on data quality. Participants gain a clear understanding of acquisition terminology and field concepts. The program links theoretical knowledge with field-oriented practices. It serves as a foundational program for seismic exploration professionals. Upon completion, participants are well prepared for advanced seismic processing and interpretation training.

Introduction

Seismic data acquisition is one of the most critical stages in the exploration workflow, as data quality is largely determined during field operations. A strong theoretical understanding of seismic wave behavior and acquisition geometry is essential for successful land seismic surveys. This program introduces the fundamental concepts of seismic data acquisition in a structured and progressive manner. It covers the nature of seismic waves, propagation mechanisms, energy sources, recording equipment, and survey design principles. The course highlights how acquisition parameters influence signal quality and resolution. Participants learn how near-surface conditions affect seismic data and travel times. Common acquisition techniques used in modern land surveys are explained. The program also covers seismic noise sources and their characteristics. This training is suitable for entry-level professionals and those seeking a strong theoretical foundation in seismic acquisition.

Program Objectives

Participants will achieve the following objectives by the Seismic Data Acquisition Program course:

  • Understand the physical nature and behavior of seismic waves used in exploration surveys.
  • Differentiate between body waves and surface waves and recognize their effects on seismic data quality.
  • Explain seismic wave propagation mechanisms including reflection, refraction, transmission, and attenuation.
  • Understand the fundamental behavior of seismic waves in land environments.
  • Comprehend the principles of land seismic data acquisition.
  • Compare seismic energy sources used in land surveys, including vibroseis and dynamite.
  • Distinguish between impulse-based and sweep-based acquisition methods.
  • Gain familiarity with seismic acquisition equipment such as geophones, cables, and vibrators.
  • Understand basic survey design concepts, acquisition geometry, and key terminology.

Target Audience

  • Junior geophysicists.
  • Seismic acquisition engineers.
  • Field crew members and supervisors.
  • Survey and layout personnel.
  • Exploration professionals new to seismic acquisition.
  • Technical staff supporting seismic field operations.

Course Outline

Day 1 – Fundamentals of Seismic Waves

  • Introduction to seismic exploration and land acquisition objectives.
  • Definition and physical nature of seismic waves.
  • Body waves and their general characteristics.
  • Compressional waves (P-waves) and particle motion.
  • Shear waves (S-waves) and polarization behavior.
  • Velocity differences between P-waves and S-waves.
  • Energy transmission through subsurface layers.
  • Role of seismic waves in imaging the subsurface.

Day 2 – Surface Waves and Wave Propagation

  • Definition and characteristics of surface waves.
  • Rayleigh waves and circular particle motion.
  • Love waves and horizontal shear motion.
  • Comparison between surface waves and body waves.
  • Seismic wave propagation in layered earth models.
  • Reflection principles at geological boundaries.
  • Refraction concepts and critical angle behavior.
  • Transmission and attenuation of seismic energy.

Day 3 – Principles of Land Seismic Data Acquisition

  • Fundamental behavior of seismic waves in land environments.
  • Principles of land seismic data acquisition.
  • Overview of seismic energy sources used on land.
  • Vibroseis acquisition and sweep concepts.
  • Dynamite acquisition principles.
  • Charge depth, number of holes, and charge size considerations.
  • Impulse versus sweep acquisition comparison.
  • Advantages and limitations of different acquisition methods.

Day 4 – Equipment, Geometry, and Acquisition Techniques

  • Overview of seismic acquisition equipment.
  • Geophones and their operating principles.
  • Cables, connectors, and signal transmission systems.
  • Vibrator units and control systems.
  • Introduction to survey design and layout concepts.
  • Shot point definition and source location planning.
  • Receiver lines and geophone layout geometry.
  • Offset concept and pre-plot versus post-plot distances.
  • Overview of acquisition techniques:
  • Flip-flop acquisition
  • Slip-sweep acquisition
  • Blended acquisition

Day 5 – Statics, Noise, and Survey Design Basics

  • Near-surface effects on seismic data.
  • Weathering layer concept and its impact on travel times.
  • Theory of weathering static corrections.
  • Application of static corrections in land seismic surveys.
  • Definition of seismic noise.
  • Coherent noise types:
  • Ground roll
  • Guided waves
  • Cable noise
  • Air waves
  • Multiples
  • Random noise sources:
  • Wind noise
  • Electrical noise
  • Road and vehicle noise
  • Basics of survey design.
  • Grid layouts and spatial sampling concepts.
  • Aliasing and its impact on data quality.
  • Fold definition and fold calculation principles.

Training Duration

This Seismic Data Acquisition Program is delivered as a five-day theoretical training course. Each day builds progressively from seismic wave physics to acquisition geometry and survey design concepts. The course can be delivered in classroom, online, or in-house formats depending on organizational needs.

Instructor Information

This Seismic Data Acquisition Program course is delivered by expert trainers worldwide, bringing global experience and best practices. The instructors have extensive experience in land seismic acquisition, field operations, and geophysical exploration projects. They combine academic knowledge with hands-on industry expertise. Real-world seismic survey examples are used throughout the training. Participants benefit from practical insights aligned with international exploration standards.

Frequently Asked Questions (F&Q)

1- Who should attend this Seismic Data Acquisition Program course?

This course is designed for junior geophysicists, seismic acquisition engineers, field crew members, surveyors, and professionals involved in land seismic operations.

2- What are the key benefits of this Seismic Data Acquisition Program training?

The training provides a strong theoretical foundation in seismic wave behavior, acquisition methods, survey design, and noise identification, leading to improved awareness of data quality and field practices.

3—Do participants receive a certificate?

Yes, upon successful completion, all participants will receive a professional certification.

4- What language is the course delivered in?

English and Arabic.

5- Can I attend online?

Yes, you can attend in person, online, or in-house at your company.

Conclusion

The Seismic Data Acquisition Program delivers a comprehensive theoretical foundation for understanding land seismic acquisition. It enables participants to understand how wave physics and acquisition parameters affect seismic data quality. The program builds essential knowledge for effective participation in seismic field operations. Participants gain confidence in seismic terminology, equipment, and survey geometry. This course represents a critical first step toward advanced seismic processing and interpretation expertise.

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