All capabilities
Datacenter Security Needs edge adapter

DryFloor

Raised-Floor Leak Radar

Spots water or coolant spreading under the floor days before puddle sensors trip.

Readiness Needs edge adapter

The evidence is proven or strong, but this capability still needs a capability-specific ESP32 or Rust runtime adapter.

Evidence Strong theory Supported hypothesis

Published physics or adjacent results support the hypothesis; capability-specific product and site validation are still required.

Runtime family Not mapped

No browser runtime is assigned to this capability yet.

Why live sensing is unavailable

No capability-specific offline runtime is mapped yet. Keep the feature visible, explain the required edge adapter, and never fabricate a live result.

Intended capability

Validate this target only after a capability-specific adapter and ground-truth study exist: Detects water ingress and coolant leaks under raised floors and inside CRAC/liquid-cooling corridors days before puddle sensors trip, and maps the wetted area's spread over time.

This describes the intended outcome. Readiness is needs edge adapter, evidence is class B, and a catalog mapping or recording is not proof of this outcome at a real site.

Solution blueprint

See the environment before installing it.

This exact kit is one of 191 first-class designs. It includes geometry, objects, nodes, wording, scenarios, installation, limitations, and catalog-bound readiness.

Needs edge adapter

No rendered revision is available yet.

Bundled recording

A related Datacenter scene

This is one recorded vertical scenario. It is not separate validation of every capability in the catalog.

01 The physics

Water's relative permittivity (~80) dwarfs dry floor/concrete (~2-6): a spreading wet patch slows and attenuates paths crossing the plenum, producing measurable extra delay (path through 10cm of wet zone adds ~ns-scale excess delay) and a growing high-eps_r region in the reconstructed material map.

02 Shared processing path

CIR delay/attenuation drift on floor-crossing links -> RFF/NeRF eps_r map differential vs. dry baseline -> compartment Kalman spatial model of moisture spread -> CUSUM over hours-to-days for slow seepage alarms.

This is a capability design path. Components may be shared with other catalog entries; it is not presented as a unique algorithm.

03 Validation plan

Own-hardware: raised-floor testbed, introduce controlled water volumes (0.5-20L) under tiles, measure detection latency and localization vs. spot leak-rope sensors; moisture-vs-eps_r physics is textbook (class B on our integration).

04 Commercial hypothesis

Wide-area leak detection that sees under every tile, not just where the leak rope happens to lie — sold to the DC facilities manager as insurance against the classic 'CRAC leak found by the downstairs tenant' incident.