LNG Storage Facilities Sample Clauses

LNG Storage Facilities. The LNG will be stored in three single containment insulated LNG storage Tanks (Tank 1, Tank 2 and Tank 3). These Tanks will be designed and constructed so that the primary container and an earthen impoundment dike will be capable of independently containing the LNG. Each Tank will be a double walled design and will consist of a 9% nickel steel inner container; a carbon steel outer tank and a carbon steel domed roof with an insulated aluminum deck over the inner container suspended from the roof. The space between the inner wall and the outer wall will be insulated with expanded Perlite. The Tank will be supported on a piled foundation system. All piping into and out of the inner or outer containers will enter from the top of the Tank. The inner container will be designed and constructed in accordance with the requirements of API Standard 620 Appendix Q. The Tank system will meet the requirements of NFPA 59A and 49 CFR Part 193. The inner tank will be “open top”, consisting of a shell and bottom. The self-supporting roof of the outer tank will contain gas and gas pressure produced by the stored product. The Tanks will be designed taking into consideration the seismic loads as well as the wind loads. The Tank insulation system will be designed to limit the Tank Boil-Off rate to a notional rate of no greater than 0.05% by volume per day of the Tank contents at an ambient temperature of 90°F, with the Tank full and in a steady-state condition. The notional Tank Boil-Off rate will be documented through heat transfer calculations. The annular space between the inner and outer tanks will be approximately 36 inches wide and will be filled with Perlite and resilient glass wool blanket insulation. The suspended deck will be insulated with glass wool blankets. The Tank bottoms will be insulated with cellular glass block insulation which is a load bearing insulation designed to support the Tank and product weight. Tank instrumentation will consist of resistance temperature detector (“RTDs”) for sensing the Cool Down and foundation temperatures, tank gauging system that will provide level temperature and density and a data acquisition system. The Tanks will be protected with pressure and vacuum relief systems. A monorail crane will be positioned for relief valve service. Roof platforms will be provided to provide sufficient working space around the pump xxxxx and piping. A monorail type hoist will be provided for pump maintenance. Four intank pump columns will be inst...
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Related to LNG Storage Facilities

  • BUYER'S FACILITIES 1. Buyer will maintain at its own expense facilities from the delivery point to the point of use and the burners and equipment for using gas, and Buyer will at all times keep gas-using equipment on said premises in a condition conforming with such reasonable rules and regulations as may be prescribed therefore by regulatory authority having jurisdiction thereover and with the requirements of any valid law thereto appertaining. In the event that rules are not prescribed by a regulatory authority, Buyer will abide by codes as used in the gas industry. 2. Seller shall not approve sale of gas on an interruptible basis to Buyer until and unless Seller is satisfied that Buyer has, or will, install adequate stand-by facilities to meet its full fuel requirements during periods of sustained interruptions. 3. Seller shall not approve sales of gas to Buyer unless Seller is satisfied that Buyer has not, or will not interconnect downstream fuel piping of natural gas for use in different priority-of• service categories.

  • Underground Facilities All underground pipelines, conduits, ducts, cables, wires, manholes, vaults, tanks, tunnels, or other such facilities or attachments, and any encasements containing such facilities, including without limitation those that convey electricity, gases, steam, liquid petroleum products, telephone or other communications, cable television, water, wastewater, storm water, other liquids or chemicals, or traffic or other control systems.

  • Interconnection Facilities 4.1.1 The Interconnection Customer shall pay for the cost of the Interconnection Facilities itemized in Attachment 2 of this Agreement. The NYISO, in consultation with the Connecting Transmission Owner, shall provide a best estimate cost, including overheads, for the purchase and construction of its Interconnection Facilities and provide a detailed itemization of such costs. Costs associated with Interconnection Facilities may be shared with other entities that may benefit from such facilities by agreement of the Interconnection Customer, such other entities, the NYISO, and the Connecting Transmission Owner. 4.1.2 The Interconnection Customer shall be responsible for its share of all reasonable expenses, including overheads, associated with (1) owning, operating, maintaining, repairing, and replacing its own Interconnection Facilities, and

  • Generating Facility The Interconnection Customer’s device for the production of electricity identified in the Interconnection Request, but shall not include the Interconnection Customer’s Interconnection Facilities.

  • PUBLIC FACILITIES Supplier’s employees may be required to perform work at government- owned facilities, including schools. Supplier’s employees and agents must conduct themselves in a professional manner while on the premises, and in accordance with Participating Entity policies and procedures, and all applicable laws.

  • Interconnection Customer’s Interconnection Facilities The Interconnection Customer shall design, procure, construct, install, own and/or control the Interconnection Customer’s Interconnection Facilities described in Appendix A at its sole expense.

  • Facilities Keep all properties useful or necessary to Borrower's business in good repair and condition, and from time to time make necessary repairs, renewals and replacements thereto so that such properties shall be fully and efficiently preserved and maintained.

  • Verizon OSS Facilities Any gateways, interfaces, databases, facilities, equipment, software, or systems, used by Verizon to provide Verizon OSS Services to ICG.

  • New Facilities For all new Generating Facilities to be interconnected pursuant to the Tariff, other than wind- powered and other non-synchronous generation facilities, the Generation Interconnection Customer shall design its Customer Facility to maintain a composite power delivery at continuous rated power output at a power factor of at least 0.95 leading to 0.90 lagging. For all new wind- powered and other non-synchronous generation facilities the Generation Interconnection Customer shall design its Customer Facility with the ability to maintain a composite power delivery at a power factor of at least 0.95 leading to 0.95 lagging across the full range of continuous rated power output. For all wind-powered and other non-synchronous generation facilities entering the New Service Queue on or after November 1, 2016, the power factor requirement shall be measured at the high-side of the facility substation transformers. This power factor range standard shall be dynamic and can be met using, for example, power electronics designed to supply this level of reactive capability (taking into account any limitations due to voltage level, real power output, etc.) or fixed and switched capacitors, or a combination of the two. For all wind-powered and other non-synchronous generation facilities entering the New Service Queue on or after May 1, 2015, and before November 1, 2016, the power factor requirement shall be measured at the generator’s terminals. For new generation resources of more than 20 MW, other than wind- powered and other non-synchronous Generating Facilities, the power factor requirement shall be measured at the generator’s terminals. For new generation resources of 20 MW or less, and all wind-powered and other non-synchronous generation facilities entering the New Service Queue prior to May 1, 2015, the power factor requirement shall be measured at the Point of Interconnection. Any different reactive power design criteria that Transmission Provider determines to be appropriate for a wind-powered or other non-synchronous generation facility shall be stated in the Interconnection Service Agreement. A Transmission Interconnection Customer interconnecting Merchant D.C. Transmission Facilities and/ or Controllable A.C. Merchant Transmission Facilities shall design its Customer Facility to maintain a power factor at the Point of Interconnection of at least 0.95 leading and 0.95 lagging, when the Customer Facility is operating at any level within its approved operating range.

  • Toilet Facilities The Employer provides the Contractor access to toilet facilities. Temporary chemical toilets are provided by the Contractor where deemed necessary.

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