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Erosion Control and Slope Stabilization using ConstruckSlope Plus over an area of 42,000 m²

Erosion Control and Slope Stabilization using ConstruckSlope Plus over an area of 42,000 m²

Sustainable Slope Stabilization with ConstruckSlope Plus

Construck Technologies deployed ConstruckSlope Plus as the flagship solution for advanced slope stabilization in a geologically sensitive site. Utilizing cutting-edge geosynthetic materials and sustainable engineering practices, the system was engineered to address erosion, weathering, and long-term slope degradation.
This solution aligns with Oman Vision 2040 and supports the UN Sustainable Development Goals (SDGs) by minimizing carbon emissions, reducing resource consumption, and limiting operational waste—all while delivering high-performance results on the ground. ConstruckSlope Plus demonstrates how engineered systems can meet modern infrastructure needs without compromising environmental responsibility.

Project Overview

This solution aligns with Oman Vision 2040 and supports the UN Sustainable Development Goals (SDGs) by minimizing carbon emissions, reducing resource consumption, and limiting environmental waste—all while delivering high-performance results on the ground. ConstruckSlope Plus provides Oman with a trusted, certified solution that meets international needs without compromising environmental responsibility.
Construco was assigned to provide, the risk of slope destabilization caused by erosion and weathering processes in diverse mandates. Ufflestands fill, soil is many vulnerable to erosion, leading to slope destabilization, soil loss, and landslides. Such challenges require robust, future-proof solutions to preserve the environment and ensure safety. The Government of Oman (GOO) assigned Construco with studying and stabilizing the slope located within GOO premises. This steep was out of scalable ago in landslides and limestone bedrock of poor lohr quality, presenting long-term stability and erosion challenges. This solution required a reliable site strategic. Construco has the expertise solution of the SecureSlope Plus system as a sustainable solution for slope stabilization.
Erosion Control and Slope Stabilization using ConstruckSlope Plus over an area of 42,000 m²

Challenges Identified

  • The absence of prior geotechnical studies: Construck conducted a geomechanical survey and laboratory tests to characterize the bedrock. And topographic survey to establish the slope's current conditions.
  • Heterogeneous Rock Formation: The slope exhibits a distinct intersection of compacted blocky rock and less compact detrital limestone, with the harder rock.
  • Progressive Erosion Risk: The weaker detrital limestone layer below the harder formation is prone to erosion, threatening long-term stability.
  • Weather Impacts: Intense rainfall events, exacerbated by climate change, increase the risk of slope degradation.

Solution Implemented:

1. Geotechnical Investigation and Survey
  • a.Conducted geomechanical and topographic surveys.
  • b.Analyzed rock properties to adjust the slope design.
2. Manual Bench Cutting
  • a.Prepared the slope manually with safety measures for workers.
  • b.Adjusted berm height is based on rock hardness and stability analysis.
3. Installation of ConstruckSlope Plus
  • a.Applied slope protection materials and reinforcement systems.
  • b.Installed tie rods and drainage features to prevent erosion.

Project Outcomes: The Sustainable Slope Stabilization Solution For the Government of Oman

The implementation of the ConstruckSlope Plus system in our case study demonstrated significant sustainability and efficiency outcomes:

Targeted Slope Reinforcement

Custom geotechnical design and modular installation addressed heterogeneous rock formations, enhancing slope stability in both compacted and weak detrital zones.

Resilience Against Erosion and Weathering

The system effectively controlled surface erosion and mitigated slope degradation—especially in areas exposed to seasonal rainfall and runoff.

Optimized Material Use

By avoiding excessive backfilling or concrete works, the project conserved materials and minimized impact on the surrounding environment.

Low-Impact Construction

Manual slope preparation combined with geosynthetic-based solutions reduced the need for heavy equipment, limiting site disruption and emissions.

Efficient Water Management

Integrated drainage elements redirected runoff and reduced water-induced erosion risks, contributing to long-term slope performance.

Minimized Waste and Maintenance

Precise slope profiling and pre-tested materials reduced rework, material loss, and long-term maintenance requirements.

Project outcome

Sustainability Development Goals (SDGs) Alignment

SDG 6
SDG 9
SDG 11
SDG 12
SDG 13
SDG 15

Sustainability Report

C02 Reduction

630K Kg C02-eq

Reduction in Water Usage

1.05Million L

Fuel Reduction

3,990 L

Related Services

Consulting Engineering

Consulting Engineering

Vegetative Erosion Control Solutions

Vegetative Erosion Control Solutions

Non-Vegetative Erosion Control

Non-Vegetative Erosion Control

Geohazard Mitigation

Geohazard Mitigation

Slope Stabilization

Slope Stabilization

Foundations & Ground Engineering

Foundations & Ground Engineering

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