Unsaturated conductivity of MSW based on soil-water characteristic curve
Jianyong Shi
Abstract
Jianyong Shi
Abstract
Based on the soil-water characteristic curve of synthetic MSW,quantitative relations between unsaturated conductivity and void ratio/organic content of MSW are given.The relations between unsaturated conductivity and suction in two logarithms coordinates are shown to be linear.The larger the void ratio,the larger the unsaturated hydraulic conductivity and unsaturated gaseous conductivity.The unsaturated hydraulic conductivity is 10-11~10-5 cm/s,and the unsaturated gaseous conductivity is 10-5~10-2 cm/s.The void ratio has more serious influence on unsaturated conductivity compared to the organic content.The experimental results are proved reasonable by validation,and the unsaturated conductivity of certain MSW can be predicted by the proposed method.
OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Based on the soil-water characteristic curve of synthetic MSW,quantitative relations between unsaturated conductivity and void ratio/organic content of MSW are given.The relations between unsaturated conductivity and suction in two logarithms coordinates are shown to be linear.The larger the void ratio,the larger the unsaturated hydraulic conductivity and unsaturated gaseous conductivity.The unsaturated hydraulic conductivity is 10-11~10-5 cm/s,and the unsaturated gaseous conductivity is 10-5~10-2 cm/s.The void ratio has more serious influence on unsaturated conductivity compared to the organic content.The experimental results are proved reasonable by validation,and the unsaturated conductivity of certain MSW can be predicted by the proposed method.
Key concepts: Hydraulic conductivity, Void ratio, Conductivity, Materials science, Void (composites), Water content, Porosity, Suction