WO2013166327A1

Environmental system and modular power skid for a facility

Abstract

A set of two or more modular-critical-power-distribution skids are arranged in a redundant power center configuration to supply power to electrical loads in a modular data center facility. The skids are housed in hardened buildings. The uninterruptable power supply is electrically and mechanically connected into the multiple power distribution cabinets, all of which are mounted onto a steel framed support structure, which supports a weight of those uninterruptable power supplies and power distribution cabinets. The environmental control system controls a cooling system for the modular-critical-power-distribution skids. Electrical power from the A-side and B-side connects in a redundant power configuration to electrical loads in the cooling system.

WO2013166327A1, drawing sheet 1
Sheet 1 of 7

Term

No projected expiry on record.

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20 claims: 2 independent, 18 dependent

  1. 1
    CLAIMS We claim:1 . A power distribution system, comprising: a set of two or more modular-critical-power-distribution skids are arranged in a redundant power center configuration to supply power to electrical loads in a modular data center facility, where a first modular-critical-power-distribution skid is housed in a first hardened building and connects to the electrical loads to supply power as an A-side power for the electrical loads, and where a second modular-critical-power-distribution skid is housed in a second hardened building and connects to the electrical loads to supply power as a B-side power for the electrical loads, where each modular-critical-power-distribution skid is assembled with an uninterruptable power supply, multiple power distribution cabinets, and an environmental control system, where each modular-critical-power-distribution skid is pre-wired and pre-engineered for the uninterruptable power supply, the multiple power distribution cabinets, and the environmental control system in an off-site facility prior to being installed in the modular data center facility as a monolithic pre-wired preassembled integrated platform, and where the uninterruptable power supply is electrically and mechanically connected into the multiple power distribution cabinets, all of which are mounted onto a steel framed support structure, which supports a weight of those uninterruptable power supplies and power distribution cabinets, where the modular data center facility contains computing systems that includes servers and storage devices housed in hot and cool zones, routers and switches that transport data traffic between the servers as well as transport traffic to a world exterior to the modular data center facility, where the environmental control system controls a cooling system for the modular-critical-power-distribution skids, and electrical power from the A-side and B-side connects in a redundant power configuration to electrical loads in the cooling system, where each power center contains its own modular-critical- power-distribution skid and is cooled by multiple packaged Heating, Ventilation, and Air Condition (HVAC) Roof-Top Units (RTU) providing at least N+1 system redundancy for the cooling system for each power center, where the electrical power for each HVAC roof-top unit that cools the power centers is available from both the A-side power from its own circuit breaker in the power distribution cabinets in the first modular-critical-power-distribution skid and B-side power from its own circuit breaker in the power distribution cabinets in the second modular-critical-power-distribution skid, and where each modular-critical-power- distribution skid has a cross tie breaker inside its power distribution cabinets to allow at least the first modular-critical-power-distribution skid to supply both A- side and B-side redundant power when the cross tie breaker is closed and the first modular-critical-power-distribution skid is operational.
  2. 14
    A method of supplying redundant power to electrical loads in a modular data center facility with a set of two or more modular-critical-power-distribution skids arranged in a redundant power supply configuration, comprising:using a first modular-critical-power-distribution skid housed in a first hardened building to supply power as an A-side power for the electrical loads;using a second modular-critical-power-distribution skid housed in a second hardened building to supply power as a B-side power for the electrical loads, where each modular-critical-power-distribution skid is assembled with an uninterruptable power supply, multiple power distribution cabinets, and an environmental control system, where each modular-critical-power-distribution skid is pre-wired and pre-engineered for the uninterruptable power supply, the multiple power distribution cabinets, and the environmental control system in an off-site facility prior to being installed in the modular data center facility as a monolithic pre-wired preassembled integrated platform, and where the uninterruptable power supply is electrically and mechanically connected into the multiple power distribution cabinets, all of which are mounted onto a steel framed support structure, which supports a weight of those uninterruptable power supplies and power distribution cabinets;and where the environmental control system controls a cooling system for both of the modular power skids, and electrical power from the A-side and B-side connects in a redundant power configuration to electrical loads in the cooling system, where each power center contains its own modular-critical-power- distribution skid and is cooled by multiple packaged Heating, Ventilation, and Air Condition (HVAC) Roof-Top Units (RTU) providing 2 N system redundancy for the cooling system for each power center, where the electrical power for each HVAC roof-top unit that cools the power centers is available from both the A-side power from its own circuit breaker in the power distribution cabinets in the first modular-critical-power-distribution skid and B-side power from its own circuit breaker in the power distribution cabinets in the second modular-critical-power- distribution skid, and where each modular-critical-power-distribution skid has a cross tie breaker inside its power distribution cabinets to allow at least the first modular-critical-power-distribution skid to supply both A-side and B-side redundant power when the cross tie breaker is closed and the first modular- critical-power-distribution skid is operational.