Research map: Prediction of the CS of Bacillus subtilis bacterial concrete with fly ash and calcium lactate
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Random Forests
· Leo Breiman · 2001 · 133269 citations · Cited by this paper
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· Zhigang Zhang · 2013 · 266 citations · Cited by this paper
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· Mustafa Şahmaran · 2008 · 250 citations · Cited by this paper
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· Ha Thanh Nguyen · 2019 · 248 citations · Cited by this paper
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· Jun Feng · 2021 · 246 citations · Cited by this paper
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· Pipat Termkhajornkit · 2009 · 241 citations · Cited by this paper
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· Kim Van Tittelboom · 2016 · 226 citations · Cited by this paper
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· Nidhi Nain · 2019 · 189 citations · Cited by this paper
Effect of fly ash and superabsorbent polymer on concrete self-healing ability
· Pattharaphon Chindasiriphan · 2019 · 159 citations · Cited by this paper
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· Gürkan Yıldırım · 2018 · 154 citations · Cited by this paper
Self-healing of Engineered Geopolymer Composites prepared by fly ash and metakaolin
· Lili Kan · 2019 · 131 citations · Cited by this paper
Quantification of chemical and biological calcium carbonate precipitation: Performance of self-healing in reinforced mortar containing chemical admixtures
· Claudia Stuckrath · 2014 · 114 citations · Cited by this paper
Impact of Bacillus subtilis bacterium on the properties of concrete
· Shradha Jena · 2020 · 106 citations · Cited by this paper
Bacillus subtilis bacteria used in fiber reinforced concrete and their effects on concrete penetrability
· Nasrin Karimi · 2019 · 103 citations · Cited by this paper
Effects of carrier on the performance of bacteria-based self-healing concrete
· Xuan Zhang · 2021 · 101 citations · Cited by this paper
Numerical modeling for crack self-healing concrete by microbial calcium carbonate
· Hassan Amer Algaifi · 2018 · 91 citations · Cited by this paper
Daily Water Level Prediction of Zrebar Lake (Iran): A Comparison between M5P, Random Forest, Random Tree and Reduced Error Pruning Trees Algorithms
· Viet‐Ha Nhu · 2020 · 84 citations · Cited by this paper
Strength performance of recycled aggregate concretes containing mineral admixtures and their performance prediction through various modeling techniques
· Sumit Arora · 2019 · 79 citations · Cited by this paper
Comprehensive microbiological studies on screening bacteria for self-healing concrete
· Chereddy Sonali Sri Durga · 2021 · 75 citations · Cited by this paper
The effects of age, cement content, and healing time on the self-healing ability of high-strength concrete
· Kamil Tomczak · 2018 · 66 citations · Cited by this paper
Evaluation of the crack-healing performance and durability of bacteria integrated alkali-activated fly ash composites
· Manas Sarkar · 2022 · 63 citations · Cited by this paper
An Experimental Study on Effects of Bacterial Strain Combination in Fibre Concrete and Self-Healing Efficiency
· A. Chithambar Ganesh · 2019 · 62 citations · Cited by this paper
Spore-forming Bacillus subtilis vis-à-vis non-spore-forming Deinococcus radiodurans, a novel bacterium for self-healing of concrete structures: A comparative study
· Sandip Mondal · 2020 · 59 citations · Cited by this paper
Evaluation of effects of multi-varied atmospheric curing conditions on compressive strength of bacterial (bacillus subtilis) cement mortar
· Muyideen Abdulkareem · 2019 · 56 citations · Cited by this paper
Studies on the mechanical properties of bacterial concrete with two bacterial species
· P. Jagannathan · 2018 · 54 citations · Cited by this paper
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