Compact Design with Fewer Downpipes
Akasison Siphonic Roof Drainage System handles large water volumes with smaller pipe diameters, reducing the number of downpipes and underground piping, which simplifies planning and lowers installation costs.
Backed by 20 years of proven performance across global projects, the Akasison siphonic roof drainage system leverages cutting-edge technology. Continuous R&D ensures ongoing innovation, adapting the system to meet evolving market demands.
Our experienced team at Ashirvad offers end-to-end dedicated support, from system design and technical consultation to on-site training and installation assistance, ensuring seamless project execution. Our deep understanding of fluid dynamics ensures a reliable, high-performing system for your project, maintaining excellence from design to implementation.
Siphonic systems benefit from being self-cleaning due to the high velocities they create. This ensures a high-performance, blockage-free drainage solution.
Yes, siphonic drainage is highly suitable for high-rise buildings. The system eliminates the need for vertical stacks and allows for more flexibility in pipe routing. There is no maximum height limit for siphonic systems.
The system works by preventing air from entering the pipes using special outlets. Once the pipes are about 70% full of water, the siphonic effect starts, pulling water through the system faster. The flow rate automatically adjusts based on how much it’s raining.
Akasison has proprietary software to perform hydraulic calculations, ensuring all requirements are met according to the system’s specifications.
Yes, Akasison offers complete BIM families for the siphonic roof drainage system, available upon request.
According to European standards (DIN 1986) and local Indian codes (NBC & UIPC), an emergency or overflow system is mandatory for all roof drainage systems, including both conventional and siphonic types. It is required to manage excess water under the following conditions:
Planning Guidelines for Emergency Systems: