AQUAASSET RELIABILITY

BUILT FOR WATER OPERATIONS

Every pump
tells a story.
Follow the evidence.

An interactive agent that brings process trends, vibration and maintenance history into one investigation — and helps an engineer decide what to check next.

Investigate pump P-101

Working hackathon prototype · synthetic plant data

FIELD NOTE / 001P-101 · CENTRIFUGAL PUMP

Pressure is falling.
Vibration is rising.
What connects the two?

Suction line, strainer, centrifugal pump, motor and discharge line.
SUCTION PRESSURE0.27 bar(g)
VIBRATION3.73 mm/s RMS

A clue is a starting point.
AQUA helps you test the explanation.

SYNTHETIC SNAPSHOTOpen this investigation

THE PROBLEM

The alarm is in one system.
The explanation is spread across three.

A historian shows the operating change. A spectrum adds the mechanical clues. The work history supplies context. AQUA connects those sources around the asset already on your screen.

Process evidence

Pressure, flow, load and temperature at a matched operating speed.

SCADA-STYLE TELEMETRY

Vibration evidence

Waveforms, frequency spectra and signal-quality checks before interpretation.

GENERATED SIGNALS + COMPUTED FFT

Maintenance context

Fictional work records and structured engineer inspection findings.

MAXIMO-STYLE RECORDS

01 / THE WORKFLOW

From observation
to a reviewed next step.

Ask a question in the context of the selected pump. See which tools the agent used, challenge the assessment, and approve the action yourself.

  1. 01

    Investigate

    The model chooses evidence tools to read process trends, check vibration quality, retrieve maintenance context and compare hypotheses.

  2. 02

    Challenge

    Add a structured inspection finding. The evidence, support ranking and next discriminating check change together.

  3. 03

    Review

    Ask for an inspection proposal. Its scope and source references are visible, and the draft is tied to the current evidence revision.

  4. 04

    Approve & preserve

    Only your approval saves the task. AQUA reads it back from the database and keeps it in your signed-in case history.

02 / EVIDENCE CAN CHANGE THE ANSWER

Challenge the
first explanation.

Try a finding below. This preview runs the same deterministic analysis as the operations desk. The scores illustrate the reasoning process; they are not failure probabilities.

P-101 / EVIDENCE PREVIEWINITIAL VIEW

WORKING HYPOTHESIS

Suction restriction / cavitation risk

80/ 100illustrative support
NEXT DISCRIMINATING CHECK

Inspect the suction strainer and validate flange pressure; obtain water temperature, elevation and OEM NPSHr.

NPSH available, vapour pressure and OEM NPSH required are not established; cavitation is not confirmed.

Explore the full evidence

03 / WHAT IS BUILT

A working process.
Clear engineering limits.

Implemented in the demo

  • Five repeatable synthetic pump scenarios
  • OpenRouter agent with six evidence tools
  • Trends, waveform, spectrum and illustrative FMEA
  • Evidence revision, approval and persistent tasks
  • Optional browser voice input and read-aloud

Outside this prototype

  • Live SCADA or Maximo integration
  • Equipment control or automatic work orders
  • Validated remaining-life or failure-date predictions
  • Confirmed root cause or calculated NPSH margin
  • Hermes or Ambiguous AI integration

AQUA / SIGNALSPROUT

See the evidence.
Ask the next question.

Enter the operations desk

Created for AI Tinkerers’ Agents, Everywhere hackathon.