This paper reviews the use of modern 3D image-based and Light Detection and Ranging (LiDAR) methods of surface reconstruction techniques for high fidelity surveys of small rock outcrops to highlight their potential within structural geology and landscape protection. LiDAR and Structure from Motion (SfM) software provide useful opportunities for rock outcrops mapping and 3D model creation. The accuracy of these surface reconstructions is crucial for quantitative structural analysis. However, these technologies require either a costly data acquisition device (Terrestrial LiDAR) or specialized image processing software (SfM). Recent developments in augmented reality and smartphone technologies, such as increased processing capacity and higher ...
Terrestrial laser scanning (TLS) has been used extensively in Earth Science for acquisition of digit...
Data collection for kinematic and structural analyses in hills or rock slopes still maintains, nowad...
Different remote sensing technologies, including photogrammetry and LIDAR (light detection and rangi...
ABSTRACT: Laser ranging is extremely accurate and efficient. Terres-trial scanning lidar (light dete...
The goal of this thesis is to compare the accuracy and precision of the discontinuity identification...
SummaryThis work deals with separation of vegetation from 3D data acquired by Terrestrial Laser Scan...
The potential to visualize and analyse geological outcrops in a 3D environment has made terrestrial ...
Like many fields in the earth sciences, geology is a rapidly expanding application area demanding sp...
Remote sensing methods, for example, photogrammetry and laser scanning can be employed to scan rock ...
The following report brings to light how LiDAR data of an outcrop can be acquired and subsequently p...
This paper applies remote sensing techniques and 3D point cloud (3DPC) analysis to the study of hist...
AbstractThe application of structure from motion–multiview stereo (SfM-MVS) photogrammetry to map me...
Recent developments in workflows and techniques for the integration and analysis of terrestrial LiDA...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Characterisation of a rock mass requires data from the intact rock along with the discontinuities. A...
Terrestrial laser scanning (TLS) has been used extensively in Earth Science for acquisition of digit...
Data collection for kinematic and structural analyses in hills or rock slopes still maintains, nowad...
Different remote sensing technologies, including photogrammetry and LIDAR (light detection and rangi...
ABSTRACT: Laser ranging is extremely accurate and efficient. Terres-trial scanning lidar (light dete...
The goal of this thesis is to compare the accuracy and precision of the discontinuity identification...
SummaryThis work deals with separation of vegetation from 3D data acquired by Terrestrial Laser Scan...
The potential to visualize and analyse geological outcrops in a 3D environment has made terrestrial ...
Like many fields in the earth sciences, geology is a rapidly expanding application area demanding sp...
Remote sensing methods, for example, photogrammetry and laser scanning can be employed to scan rock ...
The following report brings to light how LiDAR data of an outcrop can be acquired and subsequently p...
This paper applies remote sensing techniques and 3D point cloud (3DPC) analysis to the study of hist...
AbstractThe application of structure from motion–multiview stereo (SfM-MVS) photogrammetry to map me...
Recent developments in workflows and techniques for the integration and analysis of terrestrial LiDA...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Characterisation of a rock mass requires data from the intact rock along with the discontinuities. A...
Terrestrial laser scanning (TLS) has been used extensively in Earth Science for acquisition of digit...
Data collection for kinematic and structural analyses in hills or rock slopes still maintains, nowad...
Different remote sensing technologies, including photogrammetry and LIDAR (light detection and rangi...