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Peat Stabilization: Chemical & Mechanical Stabilization Techniques - Softcover

 
9783848417209: Peat Stabilization: Chemical & Mechanical Stabilization Techniques
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Fibrous peat is one of the weakest subsoil foundation materials under imposed loads. Shallow and deep stabilizations using ordinary Portland cement as binding agent and silica fume, blast furnace slag, fly ash, polypropylene fibres and steel fibres as chemically active and none active additives have been used to improve strength as well as to reduce compressibility of fibrous peat. Major evaluation tests used, were FVST, UCS, CBR, CUT, and Rowe cell consolidation tests. Disturbed (bulk) and undisturbed fibrous peat samples were also used for indexed property tests. For deep stabilization of peat, precast stabilized peat columns were tested for their role on shear strength, as well as compressibility of untreated or plain fibrous peat. PLT is used on plain and reinforced peat with various types of stabilized columns in a test tank, and the actual test results were compared with the answers obtained from FEM analysis. All types of test results used during the course of the research indicate that stabilization techniques used in either shallow (mass) or deep stabilizations improve the load bearing capacities of untreated fibrous peat, hence upgrading peat civil engineering properties.

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About the Author:
Dr. Behzad Kalantari obtained his bachelor and master degrees in civil engineering from University of Missouri Columbia (U.S.A) in 1983, and 1990 respectively. Also, he received his PhD in geotechnical engineering in 2010 from University Putra Malaysia (Malaysia). Since then he is serving as an Associate Prof. in University of Hormozgan (Iran).

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Book Description Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Fibrous peat is one of the weakest subsoil foundation materials under imposed loads. Shallow and deep stabilizations using ordinary Portland cement as binding agent and silica fume, blast furnace slag, fly ash, polypropylene fibres and steel fibres as chemically active and none active additives have been used to improve strength as well as to reduce compressibility of fibrous peat. Major evaluation tests used, were FVST, UCS, CBR, CUT, and Rowe cell consolidation tests. Disturbed (bulk) and undisturbed fibrous peat samples were also used for indexed property tests. For deep stabilization of peat, precast stabilized peat columns were tested for their role on shear strength, as well as compressibility of untreated or plain fibrous peat. PLT is used on plain and reinforced peat with various types of stabilized columns in a test tank, and the actual test results were compared with the answers obtained from FEM analysis. All types of test results used during the course of the research indicate that stabilization techniques used in either shallow (mass) or deep stabilizations improve the load bearing capacities of untreated fibrous peat, hence upgrading peat civil engineering properties. 288 pp. Englisch. Seller Inventory # 9783848417209

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Book Description Taschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Fibrous peat is one of the weakest subsoil foundation materials under imposed loads. Shallow and deep stabilizations using ordinary Portland cement as binding agent and silica fume, blast furnace slag, fly ash, polypropylene fibres and steel fibres as chemically active and none active additives have been used to improve strength as well as to reduce compressibility of fibrous peat. Major evaluation tests used, were FVST, UCS, CBR, CUT, and Rowe cell consolidation tests. Disturbed (bulk) and undisturbed fibrous peat samples were also used for indexed property tests. For deep stabilization of peat, precast stabilized peat columns were tested for their role on shear strength, as well as compressibility of untreated or plain fibrous peat. PLT is used on plain and reinforced peat with various types of stabilized columns in a test tank, and the actual test results were compared with the answers obtained from FEM analysis. All types of test results used during the course of the research indicate that stabilization techniques used in either shallow (mass) or deep stabilizations improve the load bearing capacities of untreated fibrous peat, hence upgrading peat civil engineering properties. Seller Inventory # 9783848417209

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