Module 12 · Lesson 12.2
Consolidation and permeability tests
The oedometer curve and reading Cc, Cr and σ′c; measuring permeability.
Why this matters
Settlement and its rate come from the oedometer (one-dimensional consolidation) test, and drainage from permeability tests. Reading the oedometer curve — extracting the compression indices and the preconsolidation stress — is one of the most common interpretation tasks in practice, and it is where the numbers for Module 10 come from.
In the oedometer a disc of clay is confined in a stiff ring (no lateral strain — exactly the 1-D condition of Module 10) and loaded in steps, each held until consolidation is complete. Two things are recorded: the final void ratio at each load, giving the e–log σ′ curve (from which , and come), and the time history of each step, giving (from which the rate comes).
What it calculates: the slope of the virgin line between two points on the e–log σ′ plot
- Cc
- compression index (use Cr on the recompression line)
- void ratios at the two stresses
- the two effective stresses (kPa)
In plain terms: Read Cc from two points on the steep virgin portion, Cr from the flat recompression portion. The preconsolidation stress σ′c is located at the break between them (Casagrande's construction).
Try it
Oedometer curve interpreter
Read the compression index off the virgin line, and see the preconsolidation stress at the break in the curve.
Soil
- Anchor point
- e=0.86 @ 150 kPa
- Upper point
- e=0.59 @ 1200 kPa
- Compression index Cc
- 0.299
- Recompression Cr
- 0.051
- Preconsolidation σ′c
- 150 kPa
How to read it
- Cc is the slope of the steep virgin line; Cr the flat recompression line.
- σ′c is the stress at the break between them (Casagrande construction).
- The same Cc then drives the settlement equation in Module 10.
Between 150 and 1200 kPa on the virgin line, Cc = 0.299. Below σ′c ≈ 150 kPa the curve is far flatter (Cr ≈ 0.051) — an overconsolidated clay settles little until the load passes σ′c.
Worked example
Reading Cc from an oedometer curve
Given
- On the virgin line: at σ′ = 100 kPa, e = 0.92
- At σ′ = 400 kPa, e = 0.75
Find
The compression index Cc.
Assumptions
- Both points lie on the straight virgin (normally consolidated) portion of the curve.
Practice
On the virgin line of an oedometer curve, e = 1.05 at σ′ = 50 kPa and e = 0.90 at σ′ = 200 kPa. What is the compression index Cc?
Permeability is measured directly in a permeameter — constant-head for coarse soils, falling-head for finer ones (Module 7) — or inferred indirectly from the rate of the oedometer test through . In the field it is measured by pumping or in-situ tests. Because spans many orders of magnitude and is dominated by fabric and fissures, a single laboratory value on a small specimen often badly underestimates the mass permeability of the ground.
Summary
- The oedometer imposes 1-D consolidation; its e–log σ′ curve gives Cc, Cr and σ′c, its time curves give cv.
- Cc = (e1 − e2)/log10(σ′2/σ′1), read on the virgin line; Cr on the recompression line; σ′c at the break.
- Permeability comes from permeameters (constant/falling head) or indirectly from cv.
- Small specimens can badly underestimate mass permeability because fabric and fissures dominate it.
This is educational material. It uses simplified examples to teach principles, and must not be relied on for real design or safety-critical decisions. Module overview and checkpoint