energyEfficiencyFeature
P27882
predicate
Indicates that an entity has a design, technology, or characteristic specifically intended to reduce energy consumption or improve energy performance.
All labels observed (21)
| Label | Occurrences |
|---|---|
| energyEfficiencyFeature canonical | 20 |
| energyEfficiency | 15 |
| powerEfficiency | 12 |
| energyPerformance | 7 |
| hasEnergyFeature | 5 |
| energySavingMeasure | 4 |
| energyEfficiencyMeasure | 3 |
| powerEfficiencyFocus | 3 |
| energyDesignFeature | 2 |
| energyEfficiencyGoal | 2 |
| fuelEfficiencyFeature | 2 |
| hasGreenBuildingFeatures | 2 |
| electricSpecificDesign | 1 |
| energyEfficiencyFocus | 1 |
| energyEfficient | 1 |
| energyReductionFactor | 1 |
| energySavingComparedToOlderStock | 1 |
| hasEnergyEfficiencyUpgrades | 1 |
| hasEnergyPerformance | 1 |
| isEnergyEfficient | 1 |
| powerEfficiencyClaim | 1 |
Description generation (PDg)
The one-sentence description above was generated by prompting gpt-5.1 with the predicate name and this instruction.
Instruction
Given a predicate that represents a relationship or action between entities, generate a one-sentence description explaining its meaning. # Instructions Focus on describing the relationship, not the entities themselves. # Response Format Begin the description with \' Indicates...\'
Input
Predicate: energyEfficiencyFeature
Generated description
Indicates that an entity has a design, technology, or characteristic specifically intended to reduce energy consumption or improve energy performance.
Sample triples (86)
| Subject | Object |
|---|---|
|
Manitoba Hydro Place, Winnipeg (with Smith Carter)
surface form:
Manitoba Hydro Place
|
designed to reduce energy use by more than 60 percent compared to a conventional office tower via predicate surface "energyPerformance" ⓘ |
|
The Bow (skyscraper)
surface form:
The Bow
|
south-facing curved facade for solar gain via predicate surface "energyDesignFeature" ⓘ |
|
The Bow (skyscraper)
surface form:
The Bow
|
diagrid structure reducing steel usage via predicate surface "energyDesignFeature" ⓘ |
| Flexity Zürich tram | lightweight construction via predicate surface "energyEfficiencyMeasure" ⓘ |
| Flexity Zürich tram | regenerative braking via predicate surface "energyEfficiencyMeasure" ⓘ |
| Flexity Zürich tram | efficient traction motors via predicate surface "energyEfficiencyMeasure" ⓘ |
|
City Hall, Southwark as seat of the Greater London Authority
surface form:
City Hall, Southwark
|
shaded south façade ⓘ |
|
City Hall, Southwark as seat of the Greater London Authority
surface form:
City Hall, Southwark
|
natural ventilation elements ⓘ |
| Caltrans District 7 Headquarters | designed to reduce solar heat gain via predicate surface "energyEfficiency" ⓘ |
| Caltrans District 7 Headquarters | uses shading devices to lower cooling loads via predicate surface "energyEfficiency" ⓘ |
|
Goldsmith Street Norwich
surface form:
Goldsmith Street, Norwich
|
high via predicate surface "energyEfficiency" ⓘ |
| Morgan | improved efficiency over Spitfire via predicate surface "powerEfficiency" ⓘ |
| EyeQ system-on-chip | high via predicate surface "powerEfficiency" ⓘ |
|
London City Hall (as part of Foster + Partners team)
surface form:
London City Hall
|
true via predicate surface "energyEfficient" ⓘ |
| Transrapid | high at high speeds via predicate surface "energyEfficiency" ⓘ |
| Alstom Coradia Polyvalent | reduced energy consumption compared to older fleets via predicate surface "energyEfficiencyGoal" ⓘ |
| Lubuntu | true via predicate surface "isEnergyEfficient" ⓘ |
| Hubert H. Humphrey Building | yes via predicate surface "hasEnergyEfficiencyUpgrades" ⓘ |
| MacBook Air (M3, 2024) | high via predicate surface "energyEfficiency" ⓘ |
| Airbus Helicopters H160 | Safran Arrano engines via predicate surface "fuelEfficiencyFeature" ⓘ |
| Airbus Helicopters H160 | advanced composite airframe via predicate surface "fuelEfficiencyFeature" ⓘ |
|
IBM Roadrunner supercomputer
surface form:
IBM Roadrunner
|
about 444 megaflops per watt via predicate surface "energyEfficiency" ⓘ |
| Transformation of Tour Bois-le-Prêtre, Paris | significantly reduced energy consumption via predicate surface "energyPerformance" ⓘ |
|
Ampere Altra server processors
surface form:
Ampere Altra
|
optimized for performance per watt via predicate surface "powerEfficiency" ⓘ |
| ARC 700 family | low power via predicate surface "powerEfficiency" ⓘ |
| Mireo | yes via predicate surface "energySavingComparedToOlderStock" ⓘ |
| Avenio | regenerative braking ⓘ |
| Régiolis | regenerative braking ⓘ |
| Duke Energy Center | high-performance building systems via predicate surface "energyEfficiency" ⓘ |
| Inspiro | lightweight design via predicate surface "energySavingMeasure" ⓘ |
| Inspiro | regenerative braking via predicate surface "energySavingMeasure" ⓘ |
| Inspiro | efficient HVAC system via predicate surface "energySavingMeasure" ⓘ |
| Inspiro | LED lighting via predicate surface "energySavingMeasure" ⓘ |
|
Sequoia supercomputer
surface form:
Sequoia
|
Yes via predicate surface "energyEfficiencyFocus" ⓘ |
|
BlueGene/Q supercomputer
surface form:
BlueGene/Q
|
about 2 GFLOPS per watt at system level via predicate surface "powerEfficiency" ⓘ |
| TSMC N7P | improved vs TSMC N7 via predicate surface "powerEfficiency" ⓘ |