Power Consumption

Coordinate pumps, water flows and energy use with operational context

Connect pump schedules, level, pressure, flow, energy intensity, leakage indicators and maintenance workflows.

Water and pump management with flow, pressure, level, energy intensity and local control
Conceptual solution architecture; final scope is confirmed through engineering and project acceptance.

Operational problem

Utility totals rarely explain the operational reason for consumption. Weather, production, shifts, occupancy, comfort, safety and equipment constraints must be connected before a recommendation can become a safe action.

enCoreEnergy combines measurements with operational context, analytics, AI-supported recommendations, workflows and verification. Scadify or existing BMS/PLC systems provide qualified local acquisition and execution; EnergyPortal can consolidate enterprise portfolios.

Core capabilities

Pressure, flow, level and tank context

Configured according to the project’s data, control, approval and operating boundaries.

Pump sequencing and runtime balancing

Configured according to the project’s data, control, approval and operating boundaries.

Energy per unit volume KPIs

Configured according to the project’s data, control, approval and operating boundaries.

Leakage and abnormal-operation indicators

Configured according to the project’s data, control, approval and operating boundaries.

Local control, alarms and maintenance workflows

Configured according to the project’s data, control, approval and operating boundaries.

Operational workflow

From operational context to measured action.

  1. 01Map pumps, reservoirs and process objectives
  2. 02Collect flow, pressure, level and energy
  3. 03Identify sequence or abnormal-use opportunity
  4. 04Approve or execute bounded action
  5. 05Verify hydraulic and energy outcome

Data sources and integrations

Connect the evidence that explains the decision.

  • Utility meters and submeters
  • HVAC, lighting, pumps and equipment state
  • Production, shifts, schedules and occupancy
  • Weather, temperature and humidity
  • Tariffs, invoices and maintenance context

Governance and resilience

Direct control is constrained by installed systems, safety interlocks, operating policy and customer approval. Recommendations, workflows and closed-loop control are separate modes.

Protocol roles, OEM compatibility, data retention, control limits and failure behaviour must be confirmed from the engineering-approved release and project documents.

Outcomes and KPI framework

Measure the operating result, not only the software activity.

Normalised energy-performance indicators

Use an agreed baseline, operational definition and evidence source before assigning a target.

Prioritised demand, schedule and equipment opportunities

Use an agreed baseline, operational definition and evidence source before assigning a target.

Human-approved actions with clear ownership

Use an agreed baseline, operational definition and evidence source before assigning a target.

Baseline and reporting-period evidence

Use an agreed baseline, operational definition and evidence source before assigning a target.

Solution architecture

Make responsibility visible from field to enterprise.

enCoreEnergy combines measurements with operational context, analytics, AI-supported recommendations, workflows and verification. Scadify or existing BMS/PLC systems provide qualified local acquisition and execution; EnergyPortal can consolidate enterprise portfolios. The architecture separates observation, recommendation, human-approved action and local execution so that each team can see what it owns.

Water and pump management with flow, pressure, level, energy intensity and local control
Water and pump management with flow, pressure, level, energy intensity and local control. Important control and compliance decisions remain in the project documentation.

Engineering and implementation

Move from architecture to accepted operation.

Engineering scope can include meter inventory, baseline design, significant-use analysis, interlock review, pilot acceptance criteria, field integration, commissioning, operator training and M&V planning.

Publication boundary

Capabilities are described as supported or project-configured where appropriate. Customer identities, quantified results, certifications and regulatory acceptance are not inferred from the solution page.

FAQ

Questions to resolve before implementation.

Can the system locate a leak exactly?

It can identify abnormal patterns and workflow triggers; exact location requires sufficient instrumentation and field investigation.

Can pumping operate locally?

Scadify can provide local acquisition and approved automation subject to the deployed configuration and safety boundaries.

Does Enlogy operate treatment equipment?

The software supports measurement, workflows and approved control; licensed treatment or disposal services are not implied.

Next step

Define the right power consumption architecture.

Discuss your project →