Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Characterization of Dispersive Soils"
written by T. S. Umesh, S. V. Dinesh, Puvvadi V. Sivapullaiah,
published by Materials Sciences and Applications, Vol.2 No.6, 2011
has been cited by the following article(s):
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[2] Landslide risk assessment and management using hybrid machine learning‐based empirical models
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[4] Utilization of Ionic Organic Polymer to Improve Performance and Properties of Problematic Soils
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[5] An Investigation on Recurring Failures in Morasuab Dam, Thailand: A Case Study
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[6] Using water treatment sludge to Improve Geotechnical Engineering Properties of Soils: A Review
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[7] Evaluación de la erosión laminar e interna de suelos arcillosos usando una técnica de dispersividad inducida
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[8] Incorporating potassium-rich waste material in a sustainable way to stabilize dispersive clay: A novel practical approach for the construction industry
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[9] A novel technique for the construction industry to mitigate dispersibility and internal erosion problems of sodium rich clays by using Water-Soluble potassium rich ions …
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[10] An innovative application of fine marble dust for the construction industry to mitigate the piping, internal erosion and dispersion problems of sodium-rich clays
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[11] Dispersion characteristics of clayey soils containing waste rubber particles
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[12] Sustainable incorporation of Plaster of Paris kiln dust for stabilization of dispersive soil: A potential solution for construction industry
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[13] DISPERSIVE SOIL AND ITS MANAGEMENT–A BRIEF INTRODUCTION
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[14] Engineering geological characteristics and failures of dispersive clays in Northeast China
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[15] STRENGTH CHARACTERISTICS OF DISPERSIVE SOIL STABILIZED WITH FLY ASH
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[16] Comparison of life-cycle assessment: environmental and cost approach to soil improvement
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[17] Description of different cracking processes affecting dispersive saline soil slopes subjected to the effects of frost and consequences for the stability of low slopes
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[18] Deformation characteristics and mechanism of dispersive soil under freeze–thaw cycles
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[19] Dispersivity Identification and Modification with Lime of Soil in Huaaopao's Water Conservancy Project
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[20] The effect of modern and conventional additives on compaction behavior of dispersive soils
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[21] Influence of Land Use Land Cover Changes On Soil Erosion in Elgeyo Escarpment, Kenya
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[22] Morfologi Hakisan dan sifat serakan lempung kaolinit dan montmorilonit di kawasan tropika
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[23] Feasibility Study on Dispersivity of Lignosulphonate-Treated Clay Using Pinhole Test
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[24] Identifying dispersive soils by modification of chemical criterion, validated based on data from Northwest and Central Iran
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[25] Geotechnics and Soil Sciences: multidisciplinary investigation of a saline lakebed
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[26] Effect of water quality on the filtration of dispersive base soils
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[27] Effect of nanosilica on the macro-and microbehavior of dispersive clays
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[28] Use of Cement Kiln Dust for Improving the Geotechnical Properties of Collapsible Soils
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[29] Long-term and durability properties of xanthan gum treated dispersive soils–An eco-friendly material
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[30] Fatigue life of green stabilized fiber-reinforced sulfate-rich dispersive Soil
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[31] Consistency characteristics of dispersive clays
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[32] Development of a novel numerical indicator (DLPI) for assessing the detachability and liquefaction potentials of soils in erosion-prone areas
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[33] Landslide Failure Mechanisms of Dispersive Soil Slopes in Seasonally Frozen Regions
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[34] Indy van Grinsven Bas Cammeraat Glenn van Graafeiland Jeroen Sonnemans
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[35] Improving Behavioral Properties of Dispersive Clay by Addition of Incinerated Sewage Sludge Ash and Hydrated Lime
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[36] Microbiologically Induced Calcite Precipitation biocementation, green alternative for roads–is this the breakthrough? A critical review
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[37] Dispersive Characteristics of Soils
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[38] Desempenho e comportamento mecânico de um solo dispersivo e sulfatado tratado com uma pozolana artificial, cal de carbureto e reforçado com fibras de vidro
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[39] Contact erosion initiated by clay dispersion beneath pavement layers
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[40] Swelling Prediction of Green Stabilized Fiber-Reinforced Sulfate-Rich Dispersive Soils
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[41] Morphological and Phenological Variation in Samolus ebracteatus var. coahuilensis in Different Environments in the Churince System, Cuatro Ciénegas Basin …
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[42] Disturbance and the formation and colonization of new habitats in a hydrological system in the Cuatro Ciénegas Basin
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[43] Properties and Assessment of Applications of Red Mud (Bauxite Residue): Current Status and Research Needs
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[44] Humic substances reduce the erodibility of soils in mining areas
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[45] Effect of cations and anions on flocculation of dispersive clayey soils
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[46] Desempenho e comportamento mecânico de um solo dispersivo e sulfatado tratado com uma pozolana artificial, cal de carbureto e reforçado com fibras de …
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[47] DISPERSION OF VARIOUS CLAY DUE TO SEA WATER INTRUSION.
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[48] Assessing Dispersivity and Expansivity of Clay Soils in the South-East of Yazd with Aim of Investigating Correlation between Them
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[49] ARTIFICIAL INDUCEMENT OF DISPERSIVITY IN NON DISPERSIVE CLAY SOILS
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[50] Estimating the Strength of Stabilized Dispersive Soil with Cement Clinker and Fly Ash
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[51] Riverbank Stability under the Influence of Soil Dispersion Phenomenon
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[52] Erosion Studies on Lithomargic Clays
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[53] Chemical Analysis Procedures for Determining the Dispersion Behaviour of Red Mud
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[54] Effect of industrial by-products on the strength of stabilized dispersive soil
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[55] Investigation on dispersivity potential of clayey soils of Varzeghan Hajilar earth dam and its relationship with parent rocks
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[56] Estimation of UCS-FT of Dispersive Soil Stabilized with Fly Ash, Cement Clinker and GGBS by Artificial Intelligence
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[57] Study of various methods performance for dispersivity rate detection of Miocene and Pliocene marl sediments in various erosion types of south of Hasanabad and …
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[58] ارزیابی روش‌های تشخیص واگرایی مارن قرمز بالایی (واحد M3) و مارن پلیوسن جنوب حسن‌آباد تهران و ورامین در اشکال مختلف فرسایش‎
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[59] Expansive Soils
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[60] Influence of cement clinker and ggbs on the strength of dispersive soil
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[61] Chemical and Mineralogical Characterization of Dispersive Soils
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[62] A Critical Review on Filter Design Criteria for Dispersive Base Soils
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[63] Biopolymer amendment for mitigating dispersive characteristics of red mud waste
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[64] Comparison of the effect of using class C and F fly ash on the stabilization of dispersive soils
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[65] Árvízvédelmi gátak diszperzitása
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[66] Assessment of Dispersion Characteristics of Red Mud Waste from Physical Tests
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[67] Behavior of a Simulated Collapsible Soil Modified with XPS-Cement Mixtures
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[68] Treatment of dispersive clay soil by ZELIAC
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[69] Influence of Sodium and Lithium Monovalent Cations on Dispersivity of Clay Soil
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[70] Remediation of Dispersive Soils
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[71] The probabilistic stability analysis of saturated-unsaturated MH and CL soil slope with rainfall infiltration
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[72] Effects of soil physico-chemical properties on stream bank erosion induced by seepage in northeastern Iran
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[73] Effects of Salinity and Sodicity of Water and Soil Texture on Some Soil Mechanical Properties and Optimum Water Content for Tillage
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[74] Effects of salinity and sodicity of water and soil texture on some soil mechanical properties and optimum water content for tillage.
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[75] Characterization of dispersive problematic soils and engineering improvements: A review
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[76] GEOTECHNICAL INVESTIGATION AND MITIGATION WORKS IN THE SOIL PIPING AFFECTED REGIONS OF KERALA
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[77] Germination of four riparian species in a disturbed semi-arid ecosystem
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[78] Stabilizing Dispersive Soil Using Brown Coal Fly Ash and Hydrated Lime
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[79] Retrieval of Soil Dispersion Using Hyperspectral Remote Sensing
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[80] Special Considerations in Design of Foundation in Problematic Soils
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[81] FACTORS CONTROLLING THE DISPERSIVITY OF SOILS AND THE ROLE OF ZETA POTENTIAL
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[82] Investigation in to some of the Engineering Properties of Soils Found in Debre Birhan Town, Ethiopia
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[83] Quantifying sediment transport from eroding gullies using LiDAR
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[84] Estimating patterns and rates of coastal cliff retreat around Tauranga Harbour
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[85] Filtration of Broadly Graded Cohesive Dispersive Base Soils
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[86] Use of Artificial Neural Network in Predicting Permeability of Dispersive Clay Treated With Lime and Pozzolan
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[87] Experimental Study on Contact Erosion Failure in Pavement Embankment with Dispersive Clay
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[88] Tenaw Workie
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[89] UN CONFINED COMPRESSIVE STRENGTH OF DISPERSIVE SOILS
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[90] Erosion dans les ouvrages hydrauliques : de la dispersion à la détection en place
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[91] Effects of using pozzolan and portland cement in the treatment of dispersive clay
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[92] Dispersive Clay: Influence of Physical and Chemical Properties on Dispersion Degree
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[93] Research Article Effects of Using Pozzolan and Portland Cement in the Treatment of Dispersive Clay
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[94] Geotechnical Properties of Problematic Soils Emphasis on Collapsible Cases
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