Water-Tube Boiler Sonic Soot Blower
Budget: ₹10,000 – ₹10,001 INR
I need a complete engineering design for a sonic soot blower dedicated to a water-tube boiler. The main driver is to prolong the unit’s service life by keeping the economizer section consistently clean without resorting to abrasive or high-pressure mechanical methods.
Here’s what I’m looking for:
• A properly sized acoustic horn (frequency, SPL, nozzle geometry) that is effective on the economizer’s finned tubes.
• Integration details—mounting arrangements, air supply specs, control logic—and confirmation that the new equipment will fit around existing access doors and ducting.
• Supporting calculations or CFD evidence showing ash/soot detachment rates versus current steam-soot-blowing performance.
• Fabrication drawings, 3D models, and a concise bill of materials ready for our shop.
• An operating guide outlining start-up sequencing, typical pulse intervals, and maintenance checks.
Acceptance will be based on documented clearance of at least 80 % of deposited soot in the economizer after a simulated 30-day load cycle, plus verification that sound levels remain within OSHA limits at the boiler room boundary.
If you have prior experience with acoustic cleaning systems or boiler heat-recovery sections, your insight will be invaluable.
Here’s what I’m looking for:
• A properly sized acoustic horn (frequency, SPL, nozzle geometry) that is effective on the economizer’s finned tubes.
• Integration details—mounting arrangements, air supply specs, control logic—and confirmation that the new equipment will fit around existing access doors and ducting.
• Supporting calculations or CFD evidence showing ash/soot detachment rates versus current steam-soot-blowing performance.
• Fabrication drawings, 3D models, and a concise bill of materials ready for our shop.
• An operating guide outlining start-up sequencing, typical pulse intervals, and maintenance checks.
Acceptance will be based on documented clearance of at least 80 % of deposited soot in the economizer after a simulated 30-day load cycle, plus verification that sound levels remain within OSHA limits at the boiler room boundary.
If you have prior experience with acoustic cleaning systems or boiler heat-recovery sections, your insight will be invaluable.