← Back to Research Radar
Scientific Literature Scientific Literature

Numerical Investigation on the Microbial Shallow Grouting Reinforcement in Permeability Anisotropic Seabeds and Liquefaction Evaluation

Yujie Li, Lizhong Wang, Zhenkui Wang, Zhen Guo
April 10, 2026
Published Date

Research Abstract & Technology Focus

Microbially induced calcium carbonate precipitation (MICP) offers a sustainable approach to reinforcing marine soils, with broad potential in coastal protection, infrastructure reinforcement, and landing of autonomous underwater vehicle (AUV), where stable seabed is critical. This study presents a multifield coupled numerical model that considers bacterial growth, chemical reactions, fluid flow, solute transport, and wave actions. The model is validated against laboratory and field data under wave loading. Results show that seabed permeability anisotropy strongly influences solute migration and calcium carbonate precipitation. Low vertical permeability produces broader but shallower precipitation zones, while higher vertical permeability promotes deeper, columnar calcium carbonate precipitation. Wave-induced pore pressure accelerates reaction rate, enhancing precipitation rate and extent. MICP significantly improves liquefaction resistance by increasing shear stiffness (up to 12.86 times) and cohesion (up to 1.21 MPa), thereby forming a stable zone around the grouting pipe. Vertical permeability controls the liquefaction depth through pore-pressure dissipation, whereas horizontal permeability determines lateral precipitation range. A stepped-shape increase relationship is discovered between horizontal permeability and effective protection range. This study offers a validated model to design and optimize microbial shallow grouting for stabilizing anisotropic seabeds in marine engineering.
Read Full Literature

AI Semantic Synergy Context

Connecting this academic literature to real-world market discussions and products.

openalex.org › research concept
78%
🔥

Numerical Investigation on the Microbial Shallow Grouting Reinforcement in Permeability Anisotropic Seabeds and Liquefaction Evaluation

Microbially induced calcium carbonate precipitation (MICP) offers a sustainable approach to reinforcing marine soils, with broad potential in coastal protection, infrastructure reinforcement, and l...

openalex.org › research concept
0%

Characterizing the Unique Chemical Imprint of On‐Axis, Lower‐Temperature Hydrothermal Flow to the Deep Ocean (Southern East Pacific Rise, 16.5°–18.0°S)

Abstract In addition to high‐temperature vents, lower‐temperature flow (LTF) (

crossref.org › academic paper
0%

Multiscale architecture design of 3D printed biodegradable Zn-based porous scaffolds for immunomodulatory osteogenesis

AbstractReconciling the dilemma between rapid degradation and overdose toxicity is challenging in biodegradable materials when shifting from bulk to porous materials. Here, we achieve significant b...

openalex.org › research concept
0%

MODELING AND CHARACTERIZATION OF ALGAL GROWTH IN ANAEROBIC DIGESTION WASTEWATER FOR PROCESS OPTIMIZATION

Microalgae cultivation using anaerobic digestion (AD) wastewater is an attractive way of producing nutrient-rich biomass and treating wastewater. Integration of computational modeling provides valu...

openalex.org › research concept
0%

Improving rare-class detection in deep-sea imagery via generative augmentation with stable diffusion

Megabenthos play a critical role in maintaining deep-sea ecosystem stability, making accurate detection important for deep-sea conservation. However, the high cost of deep-sea exploration and the l...

Frequently Asked Questions (FAQ)

Curated market intelligence mapped to this research.

What is the core focus of the research titled 'Numerical Investigation on the Microbial Shallow Grouting Reinforcement in Permeability Anisotropic Seabeds and Liquefaction Evaluation'?

This literature focuses on: Microbially induced calcium carbonate precipitation (MICP) offers a sustainable approach to reinforcing marine soils, with broad potential in coastal protection, infrastructure reinforcement, and landing of autonomous underwater vehicle (AUV), whe...

What other academic literature is closely related to 'Numerical Investigation on the Microbial Shallow Grouting Reinforcement in Permeability Anisotropic Seabeds and Liquefaction Evaluation'?

Yes, highly correlated activity was mapped. An entry titled 'Numerical Investigation on the Microbial Shallow Grouting Reinforcement in Permeability Anisotropic Seabeds and Liquefaction Evaluation' discusses this: Microbially induced calcium carbonate precipitation (MICP) offers a sustainable approach to reinforcing marine soils, with broad potential in coast...

Cite this Market Intelligence Report

Reference our AI-mapped synergy between this research and the commercial market to instantly build authority.