AZA 0876 PERMEABILITY APPARATUS (FALLING HEAD PERMEABILITY)
- Falling Head Test: Specifically designed for determining the permeability of fine-grained soils.
- Accurate Hydraulic Conductivity: Provides precise measurement of the coefficient of permeability.
- Complete System: Includes all necessary components for performing the falling head test.
- Durable Construction: Built for reliable performance in geotechnical laboratories.
- Standard Compliant: Adheres to relevant ASTM and other international standards.
- Azalab Quality: Ensures accuracy and dependability in soil permeability testing.
Description
AZA 0876: Falling Head Permeability Apparatus for Fine-Grained Soil Analysis
The AZA 0876 Falling Head Permeability Apparatus from Azalab is an essential instrument for any geotechnical testing laboratory needing to accurately determine the permeability of fine-grained soils. This apparatus is specifically designed for the falling head test, a method particularly suitable for soils with low permeability, such as silts and clays. Understanding soil permeability, also known as hydraulic conductivity, is crucial in various civil engineering applications, including the design of earth dams, foundations, drainage systems, and assessing groundwater flow. The AZA 0876 provides a reliable and precise means of measuring this fundamental soil property.
Unlike the constant head test, which is used for more permeable soils like sands, the falling head test is designed for situations where the flow of water through the soil is relatively slow. In this method, a soil sample is contained within a permeameter, and water is allowed to flow through it from a standpipe. The water level in the standpipe gradually falls as water percolates through the soil. By carefully measuring the rate at which the water level falls, the permeability of the soil can be calculated. This method is particularly sensitive to the subtle flow characteristics of fine-grained soils.
A typical AZA 0876 Falling Head Permeability Apparatus includes a permeameter mould to hold the soil sample, a standpipe (usually with multiple tubes of varying diameters to accommodate different permeability ranges), a measuring scale, and necessary connecting tubing. The permeameter mould is designed to ensure a controlled flow of water through the soil sample, while the standpipe allows for accurate measurement of the changing water head. The apparatus is designed for easy assembly and operation, allowing technicians to perform tests efficiently and obtain reliable data.
Azalab constructs the AZA 0876 from high-quality, durable materials, ensuring longevity and consistent performance in a laboratory setting. Its design adheres to relevant international standards, including IS 2720 (Part XVII) (Methods of test for soils: Determination of coefficient of permeability) and similar standards from ASTM and other organizations. For detailed theoretical background on soil permeability and test procedures, resources from reputable bodies like the American Society for Testing and Materials (ASTM) or textbooks on “Soil Mechanics” are highly recommended.
By investing in the AZA 0876 Falling Head Permeability Apparatus, laboratories can obtain accurate and reliable data on the hydraulic characteristics of fine-grained soils. This information is fundamental for informed geotechnical design and analysis, contributing to the safety and success of civil engineering projects.
Specifications for the AZA 0876 PERMEABILITY APPARATUS (FALLING HEAD)
- Model Number: AZA 0876
- Apparatus Type: Falling Head Permeability Apparatus
- Application: Determination of permeability of fine-grained soils (silts, clays).
- Permeameter Mould: Typically accommodates samples of standard diameters (e.g., 50mm, 75mm, 100mm).
- Standpipe: Includes one or more glass tubes of varying diameters for measuring the falling water head.
- Measuring Scale: For accurate measurement of water level in the standpipe.
- Base: Stable base for mounting the permeameter and standpipe.
- Tubing: Flexible tubing for water connections.
- Material: Constructed from durable, corrosion-resistant materials.
- Compliance: Meets relevant international standards (e.g., IS 2720 Part XVII).
FREQUENTLY ASKED QUESTIONS (FAQ) about the AZA 0876
Q1: What is the AZA 0876 Permeability Apparatus used for?
A1: The AZA 0876 is specifically designed to determine the permeability (hydraulic conductivity) of fine-grained soils (silts and clays) using the falling head test method.
Q2: What is the falling head test?
A2: The falling head test involves measuring the rate at which water level falls in a standpipe as water flows through a soil sample. This rate is used to calculate the soil permeability.
Q3: Why is the falling head test used for fine-grained soils?
A3: Fine-grained soils have low permeability, meaning water flows through them very slowly. The falling head test is sensitive enough to accurately measure these slow flow rates.
Q4: What components are included with the AZA 0876?
A4: The AZA 0876 typically includes a permeameter mould, a standpipe (often with multiple tubes of varying diameters), a measuring scale, and connecting tubing.
Q5: What standards does the AZA 0876 comply with?
A5: The AZA 0876 is designed to meet relevant international standards, such as IS 2720 (Part XVII), for soil permeability testing.
Q6: Why is soil permeability important?
A6: Knowing soil permeability is crucial for designing foundations, drainage systems, earth dams, and other civil engineering structures. It also helps in assessing groundwater flow and potential liquefaction.
Q7: How does the AZA 0876 ensure accurate measurements?
A7: The apparatus is designed for controlled water flow and precise measurement of the falling water head, allowing for accurate calculation of soil permeability.
Additional information
Model Number |
AZA 0876 |
---|---|
Apparatus Type |
Falling Head Permeability Apparatus |
Application |
Determination of permeability of fine-grained soils (silts, clays). |
Base |
Stable base for mounting the permeameter and standpipe. |
Tubing |
Flexible tubing for water connections. |
Material |
Constructed from durable, corrosion-resistant materials. |
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