SEGO Molecular Oscillation Technology
SEGO is one option that may be assessed for cooling towers, chiller systems, boilers and heat-exchange systems.
Assess physical water treatment and system-improvement options against water-side conditions, equipment status and operating load, with performance verified at each site.
WATER SYSTEM EFFICIENCY · TECHNOLOGY DETAILThe performance of cooling, chilled-water, boiler and heat-exchange systems is jointly affected by water-side conditions, equipment status, operating load and maintenance. The key is not a single visible symptom, but where the issue occurs, under what conditions, and whether measurable system-improvement opportunities exist.
This technology page therefore does not begin with a fixed energy-saving percentage or descaling result. It begins with the on-site baseline, equipment condition and observation method.
Physical water treatment is one pathway for water and system efficiency. The solution is selected according to equipment, water quality and operating conditions.
SEGO is one option that may be assessed for cooling towers, chiller systems, boilers and heat-exchange systems.
Scale, heat-exchange, energy and maintenance outcomes are confirmed using each site’s baseline, period and measurement data.
Establish the equipment and operating baseline, deploy a suitable technology, and track water-side, heat-exchange and energy indicators.
Identify equipment, water-side conditions, load, maintenance and available data.
Record comparable equipment status, operating conditions and observation indicators.
Define the technology configuration and observation approach based on site and equipment conditions.
Track water-side, equipment and energy-related indicators under comparable conditions.
Cooling towers, chiller systems, boilers and heat-exchange systems may be assessed, with suitability confirmed for each site.
Build an assessment baseline from circulating-water, equipment and cooling operating conditions.
Assess water-side conditions together with load and equipment operating data.
Set observation and measurement criteria according to actual water-side and equipment conditions.
Focus on water-side and equipment operating conditions that affect heat-exchange performance.
Without a pre-deployment baseline and comparable post-deployment data, observations cannot be upgraded into formal performance claims.
Confirm the system, equipment, water-side conditions and on-site issue.
Establish pre-deployment equipment and operating baselines.
Deploy the technology based on the assessment results.
Track changes in systems and equipment under comparable conditions.
Different equipment and sites require different M&V designs. The following are indicator categories that may be assessed according to site conditions.
Actual SEGO improvement varies with equipment, water quality, load, operating conditions and observation period. EkoLiv uses site-specific baselines and measurement data to assess improvements involving scale, heat exchange, energy use and maintenance.
Assessed against the actual conditions of cooling towers, chiller systems, boilers and heat-exchange systems.
Improvement rates and effects are confirmed using each site’s baseline, period and measurement results.
Published results require the site, equipment, baseline, observation period, measurement method and traceable outcomes.
Tell us the equipment type, system condition and current issue. We will begin with the baseline and measurable conditions.
Connecting measurable technology improvements with business value and environmental sustainability.