In this study, a support vector machine model available in Weka Algorithms, was utilized to test the predictive capacity of compressive strength in high performance concrete (HSC) with steel fiber addition. To test the performance of the algorithm, a certain percentage were allocated for training of the algorithm, and the rest for test. This was done from 60-40 percent split up to 90-10 percent split for training and testing respectively. Results generated from the model include mean absolute error, root mean squared error, and relative absolute error for each model. It was observed that there was a good correlation between the actual and predicted values, and that errors were relatively low. Utilization of free algorithms in civil engineer...
High strength concrete (HCS) define as the concrete that meets unique mixture of performance uniform...
The effect of various parameters on the flexural strength (FS) of ultra-high-performance concrete (U...
Compressive strength is the most significant metric to evaluate the mechanical properties of concret...
Strength of concrete is the major parameter in the design of structures and is represented by the 28...
Concrete is the safest and sustainable construction material which is most widely used in the world ...
This article adopts three statistical learning algorithms: support vector machine (SVM), lease squar...
In this study, an efficient implementation of machine learning models to predict compressive and ten...
Recently, research has centered on developing new approaches, such as supervised machine learning te...
AbstractStrength of concrete is a primary criterion in selecting this material for a particular appl...
The low tensile strain capacity and brittle nature of high-strength concrete (HSC) can be improved b...
This study introduces an improved artificial intelligence (AI) approach called intelligence optimize...
Compressive strength and splitting tensile strength are both important parameters that are utilized ...
The Ultra-High Performance Concrete (UHPC) as an efficient material in constructional projects needs...
The current trend in modern research revolves around novel techniques that can predict the character...
The purpose of the research is to predict the compressive and flexural strengths of the concrete mix...
High strength concrete (HCS) define as the concrete that meets unique mixture of performance uniform...
The effect of various parameters on the flexural strength (FS) of ultra-high-performance concrete (U...
Compressive strength is the most significant metric to evaluate the mechanical properties of concret...
Strength of concrete is the major parameter in the design of structures and is represented by the 28...
Concrete is the safest and sustainable construction material which is most widely used in the world ...
This article adopts three statistical learning algorithms: support vector machine (SVM), lease squar...
In this study, an efficient implementation of machine learning models to predict compressive and ten...
Recently, research has centered on developing new approaches, such as supervised machine learning te...
AbstractStrength of concrete is a primary criterion in selecting this material for a particular appl...
The low tensile strain capacity and brittle nature of high-strength concrete (HSC) can be improved b...
This study introduces an improved artificial intelligence (AI) approach called intelligence optimize...
Compressive strength and splitting tensile strength are both important parameters that are utilized ...
The Ultra-High Performance Concrete (UHPC) as an efficient material in constructional projects needs...
The current trend in modern research revolves around novel techniques that can predict the character...
The purpose of the research is to predict the compressive and flexural strengths of the concrete mix...
High strength concrete (HCS) define as the concrete that meets unique mixture of performance uniform...
The effect of various parameters on the flexural strength (FS) of ultra-high-performance concrete (U...
Compressive strength is the most significant metric to evaluate the mechanical properties of concret...