Related Experiment Video
Updated: Jul 19, 2025

Mechanical Expansion of Steel Tubing as a Solution to Leaky Wellbores
Published on: November 20, 2014
A comparative study of workability classes using seven case studies of engineering-geological investigations of sewer
Marian Marschalko1, Zofia Zięba2, Jan Kubáč1
1Department of Geological Engineering, Faculty of Mining and Geology, VŠB-Technical University of Ostrava, 708 33, Ostrava, Czech Republic.
Abstract:
While the main focus of numerous engineering-geological investigations is to determine load-bearing capacity and settlement in engineering structures, this article aims to point at the specificity of sewer system engineering-geological investigations, which focuses on workability of soils and rocks. The study deals with workability class assessment of seven different sewer system localities. The significance of this research lies in the mutual comparison of workability class assessment of these seven localities in terms of two different workability standards. Each of the standards represents an independent model of assessment and classification of workability. The first standard (CSN 73 1001) classifies soils and rocks into seven workability classes, while the second (EN ISO 14688) comprises only three workability classes. Each of the approaches has its advantages and disadvantages. In comparison to the first one, the second standard permits faster and easier classification of rocks, but may be less fair to investors or developers when considering the real engineering-geological conditions and costs of implementation. Rocks were newly classified into three (easy, medium and difficult) categories of earthwork realization difficulty. In the study, 33 layers were classified in the category of easy realization of earthworks, 8 layers in the category of a medium degree of earthwork realization difficulty, and two layers in the category of a difficult realization of earthworks.
More Related Videos
Related Concept Videos
Factors Affecting Workability
Workability of Concrete
Concrete's workability is determined by its resistance to internal forces that arise...
Design Example: Managing Concrete Workability
Permeability of Concrete
Testing Water Quality
Slump Test
Concrete is poured into the mold in three layers to conduct the test. Each layer is compacted 25 times with a steel tamping rod, which has a five-eighths-inch diameter and a rounded end, to ensure even distribution and eliminate...

