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- A complete DX air conditioning system installation project was executed at Vark Restaurant in Riyadh.
- The system included cassette and concealed units, along with circular air ducts.
- This system boasts advanced technical features including high cooling and heating efficiency, precise temperature control, and even air distribution, ensuring the comfort and luxury of both visitors and staff at the restaurant. Additionally, the system is durable, ensuring continuous operation without interruption, and provides a comfortable and ideal environment inside the restaurant at all times.
- This project was executed by a specialized engineering team with extensive experience in HVAC systems, resulting in outstanding results that fully meet the client’s needs and expectations.

- A project to install pre-insulated air ducts was executed at the EMERSON factory in the SPARK Industrial Zone. The aim of this project is to improve the working environment inside the factory by providing an efficient and reliable ventilation system.
- The project involved the use of pre-insulated air ducts, known for their ability to reduce heat loss and improve air transmission efficiency. These ducts were carefully designed to meet industrial standards and required quality, in addition to providing a safe and healthy working environment for factory workers.
- In addition to installation, the air ducts were equipped with all necessary accessories such as mounting clamps, connectors, and noise dampers, to ensure leak-free performance and avoid technical issues.
- The project also included comprehensive tests to measure performance efficiency and ensure compliance with air quality standards and optimal airflow.
- This project was executed by specialized engineers and technicians with extensive experience in HVAC systems, resulting in outcomes that align with high-quality standards and meet the operational needs of the factory.

- This project aims to enhance the environment at King Faisal Specialist Hospital by installing a chilled water cooling system, in addition to introducing new air ducts to improve air distribution. The project was carefully planned to meet the hospital’s engineering and operational needs, with a particular focus on the comfort and safety of patients and staff.
- High-efficiency chillers were used in the cooling system to generate chilled water, which is pumped through a network of pipes to air handling units and conditioning units. New air ducts were installed to connect these units, ensuring even distribution of cold air throughout the building.
- Chillers were selected based on cooling requirements, airflow, and building size, with a focus on energy efficiency. Installation was carried out according to global engineering standards, utilizing the latest technologies in cooling and air distribution.
- Additionally, the project included comprehensive post-installation testing to ensure there were no leaks and that the system operated correctly.
- A team of specialized engineers was relied upon to ensure precise execution of the work, adhering to required health and engineering standards.

- Within this project, a comprehensive network of air ducts, drainage pipes, and water supply systems was installed in several buildings within the complex. These works were executed with the aim of ensuring a reliable and efficient infrastructure.
- Installation included the construction of new air ducts to provide effective and uniform air distribution inside the buildings, ensuring good ventilation and greater comfort for residents and visitors.
- Additionally, new drainage pipes were installed, carefully selected to ensure quick and efficient water drainage, helping to prevent blockages or leaks, and enhancing cleanliness and public health.
- The project also included the establishment of a clean water distribution system within the complex, with a focus on balanced distribution and ensuring no interruptions in supply.
- These works were carried out by specialized engineering teams, utilizing modern equipment and adhering to global engineering standards to ensure the highest levels of quality and efficiency.

- In this project, we conducted an examination of 4100 square meters of pre-installed prefabricated ductwork to identify the need for modifications and improvements.
- The examination ensured the quality of installation, detection of any air leaks, and compliance of the design with airflow requirements.
- As part of the project, we applied a fire-resistant coating to the pre-installed ductwork to make it compliant with civil defense requirements. Approved materials were used to ensure effective fire resistance in accordance with international standards.
- The inspection and application process took 45 days, with strict adherence to a tight schedule to ensure completion of the project on time.
- As a confirmation of quality, we conducted final tests to ensure the efficiency of the fire-resistant coating and the effectiveness of the ductwork after the modifications

- Within the scope of this project, we examined 3070 square meters of pre-installed prefabricated ductwork to determine the need for modifications.
- The inspection included checking for air leaks and measuring airflow to ensure effective performance.
- To meet civil defense requirements, a fire-resistant coating was applied to these ducts to enhance safety and compliance with required standards.
- The inspection and application process extended over 35 days, with strict adherence to a tight schedule to ensure project completion on time.
- To ensure quality, final tests were conducted to verify the effectiveness of the fire-resistant coating and the efficiency of the ductwork after the required modifications.

- In this project, an inspection was conducted on 1300 square meters of pre-installed prefabricated ductwork to assess the need for modifications and repairs.
- The inspection included evaluating airflow and monitoring for any potential air leaks to ensure operational efficiency.
- To meet civil defense requirements, a fire-resistant coating was applied to the air ducts to ensure compliance with safety standards.
- The inspection and application process took 40 days, following a precise schedule to ensure project completion on time.
- To confirm quality, a series of final tests were conducted to ensure the effectiveness of the fire-resistant coating and the efficiency of the air duct systems after the required modifications

- A meticulous inspection was conducted on 2000 square meters of pre-installed air ducts to assess their need for necessary modifications.
- A fire-resistant coating was applied to the air ducts according to civil defense requirements to ensure a high level of safety and compliance with local regulations.
- The inspection and application process lasted for 30 days, following a precise schedule to ensure project delivery on the specified deadline.
- To ensure quality, all necessary measures were taken to verify the efficiency of the air duct systems after the modifications were implemented

- We conducted a comprehensive inspection of 13,000 square meters of pre-installed air ducts to determine if they required any modifications or improvements.
- The aim of this inspection was to ensure the efficiency of the system and its proper operation according to engineering standards.
- The inspection process took 60 days and included airflow analysis and leak testing.
- These meticulous tests ensure that the system operates at its highest efficiency and safety levels. They also enable us to provide precise technical recommendations if any modifications or repairs are needed, ensuring compliance with industry standards and local regulations.