Coral reef accretion rates using structure-from-motion photogrammetry – Complete Phd and Masters Thesis

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Introduction:

Coral reefs are critical marine ecosystems that provide a habitat for numerous species and protect coastlines from erosion. However, these valuable ecosystems are facing numerous threats, including climate change, ocean acidification, overfishing, and pollution. One of the key indicators of the health of coral reefs is their accretion rates, which refer to the rate at which corals build their calcium carbonate skeletons. Accretion rates are crucial for understanding the growth and resilience of coral reefs in the face of environmental stressors.

Structure-from-motion (SfM) photogrammetry is a powerful tool that allows for the reconstruction of three-dimensional (3D) models of coral reefs using overlapping aerial photographs. This technology has revolutionized the way researchers can study coral reefs, providing high-resolution and accurate data on reef structure, composition, and accretion rates. By utilizing SfM photogrammetry, researchers can monitor changes in coral reef accretion over time, assess the impacts of different stressors, and inform conservation and management strategies.

This thesis aims to investigate coral reef accretion rates using SfM photogrammetry, with a focus on the following objectives:

1.2 Background of the Study
1.3 Problem Statement
1.4 Objective of the Study
1.5 Limitation of the Study
1.6 Scope of the Study
1.7 Significance of the Study
1.8 Structure of the Thesis
1.9 Definition of Terms

Chapter Two: Literature Review
– Importance of Coral Reefs
– Coral Reef Accretion Rates
– Structure-from-Motion Photogrammetry
– Previous Studies on Coral Reef Accretion Rates using SfM
– Factors Affecting Coral Reef Accretion Rates
– Conservation and Management Implications
– Future Research Directions

Chapter Three: Research Methodology
– Study Area
– Data Collection
– Image Processing
– Construction of 3D Models
– Accretion Rate Calculation
– Data Analysis
– Quality Control
– Ethical Considerations

Chapter Four: Discussion of Findings
– Accretion Rates of Coral Reefs
– Comparison with Previous Studies
– Factors Influencing Accretion Rates
– Implications for Coral Reef Conservation
– Management Recommendations
– Limitations of the Study
– Future Research Directions

Chapter Five: Conclusion and Summary
– Summary of Findings
– Contributions to the Field
– Implications for Coral Reef Management
– Conclusion
– Recommendations for Future Research
– Final Thoughts

Thesis Overview:

Coral reefs are among the most diverse and productive ecosystems on the planet, supporting a wide range of marine life and providing numerous ecosystem services. However, coral reefs are facing unprecedented threats from human activities and climate change, leading to widespread degradation and loss of these valuable ecosystems. Understanding coral reef accretion rates is crucial for assessing the growth and resilience of coral reefs, as well as guiding conservation and management efforts.

This thesis focuses on the use of Structure-from-Motion (SfM) photogrammetry to study coral reef accretion rates, with the aim of providing valuable insights into the factors influencing coral reef growth and health. By utilizing SfM technology, researchers can create detailed 3D models of coral reefs and accurately measure accretion rates over time. The findings of this research can inform conservation practices, enhance our understanding of coral reef dynamics, and guide future research efforts in this field.

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