The project was carried out in one of the driest and hottest places in the world. This park, located inSaudi Arabiathe project aims to improve the quality of life for residents and visitors by integrating natural landscapes, recreational facilities and cultural institutions.
It also aligns with Saudi Arabia’s Vision 2030, which promotes sustainability, environmental awareness and community well-being. The park will feature extensive green areas, lakes, walking trails and bicycle paths, in addition to other leisure and cultural facilities.
Locationsaudi Arabia
The extreme climatic conditions in Saudi Arabia, with an arid climate and scarce water resources, presented significant challenges in maintaining vast green areas and ecosystems in a desert environment.
One of the biggest hurdles was to develop a large-scale park that would be sustainable in a region with high water evaporation due to the High Temperatures, particularly with regard to Irrigation of the extensive green areas.
The project had to ensure that the park’s vegetation was kept hydrated without generating excessive water consumption. At the same time, Irrigation had to be energy efficient, ensuring long-term sustainability.
In order to meet these challenges, a system ofSUB-SURFACE DRIP IRRIGATION (RGS)a technology that offers a highly efficient and sustainable solution. This system allows a more intelligent use of water and energy, significantly reducing water and energy consumption compared to traditional irrigation methods.
SUB-SURFACE DRIP IRRIGATION, in addition to providing precise irrigation directly at the root of the plants, minimizes evaporation and runoff losses, resulting in savings of up to 30% in water resources.
The installed system not only promotes more efficient use of water, but also optimizes the use of fertilizers, energy and labor, making the operation sustainable.
In addition, advanced technologies were employed, such as thereuse of treated wastewater and the planting of drought-resistant native species to further reduce resource consumption.
Efficient and safe advanced Filtration solutions such as Self-cleaning disc filtration equipment were also adoptedHELIX AUTOMATIC WEIRwith its patentedAZUD HELIXwhich minimizes the frequency of self-cleaning activation, andAZUD DLP TECHNOLOGYthe water and energy consumption is very low, thanks to its high efficiency in self-cleaning with low operating pressure. All this contributes to greater sustainability and efficiency in water and energy management.
In order to meet these challenges, a system ofSUB-SURFACE DRIP IRRIGATION (RGS)a technology that offers a highly efficient and sustainable solution. This system allows a more intelligent use of water and energy, significantly reducing water and energy consumption compared to traditional irrigation methods.
SUB-SURFACE DRIP IRRIGATION, in addition to providing precise irrigation directly at the root of the plants, minimizes evaporation and runoff losses, resulting in savings of up to 30% in water resources.
The installed system not only promotes more efficient use of water, but also optimizes the use of fertilizers, energy and labor, making the operation sustainable.
In addition, advanced technologies were employed, such as thereuse of treated wastewater and the planting of drought-resistant native species to further reduce resource consumption.
Efficient and safe advanced Filtration solutions such as Self-cleaning disc filtration equipment were also adoptedHELIX AUTOMATIC WEIRwith its patentedAZUD HELIXwhich minimizes the frequency of self-cleaning activation, andAZUD DLP TECHNOLOGYthe water and energy consumption is very low, thanks to its high efficiency in self-cleaning with low operating pressure. All this contributes to greater sustainability and efficiency in water and energy management.