Cooling Tower System Sample Clauses

Cooling Tower System. Waste heat from the Perry Nuclear Power Plant is discharged to the atmosphere using a natural draft cooling tower. This closed cycle cooling water system prevents thermal pollution by disposing of waste heat to the atmosphere instead of into Lake Erie. The natural draft cooling tower is a large structure with a hyperbolic vertical shape. Cooling air flow is established through the tower by the natural draft induced within the tower. One natural draft cooling tower is required for Uxxx 0 of the Perry Nuclear Power Plant. This tower will dissipate the waste heat of the unit during normal operation which is 8.3 x 109 BTU per hour. The cooling tower design flow rate is 545,000 gallons per minute. At the base, the cooling tower is 395 feet in diameter and the height is 514 feet. The outer shell or “veil” of the cooling tower is reinforced concrete and the tower stands over a 2.7 million gallon concrete basin. The cooling tower location is east of the main plant structures. This location required expansion of the site area. It also required an extension of the shore protection barrier 750 feet to stabilize and protect the cooling tower foundation area from erosion. Heated circulating water flows from the plant to the fill section of the cooling tower. As the warm water falls downward through the fill it transfers waste heat to air rising upward through the fill. The cooled water falls to the bottom of the tower and is collected in the cold-water basin before it flows back to the plant. A circulating water pumphouse encloses the three 185,000 gpm circulating water pumps. These large pumps move cooling water between the plant and cooling towers in a closed loop. Buried 12 foot diameter reinforced fiberglass pipes convey cooling water through the closed loop between the cooling tower and the plant. To compensate for evaporative and drift losses, make up water is supplied to the cooling tower. Make up water is drawn from 2550 feet offshore into two submerged intake structures in Lake Erie and flows through the 10 foot diameter intake tunnel to the site. Each offshore intake structure is 36 feet in diameter to provide a low approach velocity. Inflow is through eight ports around the perimeter of each circular intake structure. The ports are each 3.62 feet high by 12 feet wide and are located 3 feet above the lake bottom. Cooling tower blowdown is required to maintain dissolved solids in the recirculating cooling water at acceptable levels. Accordingly, a continuous l...
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Related to Cooling Tower System

  • Sprinkler System If there now is or shall be installed in said building a "sprinkler system" the Tenant agrees to keep the appliances thereto in the demised premises in repair and good working condition, and if the New York Board of Fire Underwriters or the New York Fire Insurance Exchange or any bureau, department or official of the State or local government requires or recommends that any changes, modifications, alterations or additional sprinkler heads or other equipment be made or supplied by reason of the Tenant's business, or the location of partitions, trade fixtures, or other contents of the demised premises, or if such changes, modifications, alterations, additional sprinkler heads or other equipment in the demised premises are necessary to prevent the imposition of a penalty or charge against the full allowance for a sprinkler system in the fire insurance rate as fixed by said Exchange or by any fire insurance company, the Tenant will at the Tenant's own expense, promptly make and supply such changes, modifications, alterations, additional sprinkler head or other equipment. As additional rent hereunder the Tenant will pay to the Landlord, annually in advance, throughout the term 100%, toward the contract price for sprinkler supervisory service.

  • HVAC Heating, ventilating and air conditioning.

  • System Upgrades The Connecting Transmission Owner shall procure, construct, install, and own the System Upgrade Facilities and System Deliverability Upgrades described in Attachment 6 of this Agreement. To the extent that design work is necessary in addition to that already accomplished in the Class Year Interconnection Facilities Study for the Interconnection Customer, the Connecting Transmission Owner shall perform or cause to be performed such work. If all the Parties agree, the Interconnection Customer may construct System Upgrade Facilities and System Deliverability Upgrades. 5.2.1 As described in Section 32.3.5.3 of the SGIP in Attachment Z of the ISO OATT, the responsibility of the Interconnection Customer for the cost of the System Upgrade Facilities and System Deliverability Upgrades described in Attachment 6 of this Agreement shall be determined in accordance with Attachment S of the ISO OATT, as required by Section 32.3.5.3.2

  • Roof Any leaks or evidence of moisture? Yes No Unknown Type of Roof: Age Comments: Is there any existing fire retardant treated plywood? Yes No Unknown Comments:

  • Generators Temporary installation of generators, and permanent installation of generators that are placed inside existing non-residential buildings or that occupy an area under 50 square feet behind the building they serve.

  • Maintenance Outages If Seller reasonably determines that it is necessary to schedule a Maintenance Outage, Seller shall notify Buyer of the proposed Maintenance Outage at least five (5) days before the outage begins (or such shorter period to which Buyer may reasonably consent in light of then existing conditions). Upon such notice, the Parties shall plan the Maintenance Outage to mutually accommodate the reasonable requirements of Seller and the service obligations of Buyer; provided, however, that, unless Buyer otherwise consents, such consent not to be unreasonably withheld, no Maintenance Outage may be scheduled between the hour ending 0700 through the hour ending 2200, Monday through Saturday, during the time period commencing on May 15 and concluding on September 15. Notice of a proposed Maintenance Outage shall include the expected start date and time of the outage, the amount of Capacity of the Facility that will not be available, and the expected completion date and time of the outage. Seller shall give Buyer notice of the Maintenance Outage as soon as Seller determines that the Maintenance Outage is necessary. Buyer shall promptly respond to such notice and may request reasonable modifications in the schedule for the outage. Seller shall use all reasonable efforts to comply with any request to modify the schedule for a Maintenance Outage. Seller shall notify Buyer of any subsequent changes in Capacity available to Buyer or any changes in the Maintenance Outage completion date and time. As soon as practicable, any notifications given orally shall be confirmed in writing. Seller shall take all reasonable measures and exercise its best efforts in accordance with Prudent Electrical Practices to minimize the frequency and duration of Maintenance Outages.

  • Installation, Maintenance, Testing and Repair Unless otherwise agreed in writing by the Parties, to the extent required by Applicable Law, Interconnection provided by a Party shall be equal in quality to that provided by such Party to itself, any subsidiary, affiliates or third party. If either Party is unable to fulfill its obligations under this Section 14.2, it shall notify the other Party of its inability to do so and will negotiate alternative intervals in good faith. The Parties agree that to the extent required by Applicable Law, the standards to be used by a Party for isolating and clearing any disconnections and/or other outages or troubles shall be at parity with standards used by such Party with respect to itself, any subsidiary, affiliate or third party.

  • Electrical Provide drawings for the following systems: .1 Lighting including circuiting and luminaire identification and switching. Also provide illuminance computer printout for all indoor typical indoor spaces and parking lots. .2 Convenience outlets and circuiting, special outlets and circuiting, television outlets, and power systems and equipment. Provide riser diagrams for all electrical systems including master clock, intercom, fire alarm, ITV, computer networking/telephone. Also, provide for emergency and normal power distribution. Provide luminaire schedule. .3 Panel schedule may be in preliminary form but circuitry must be included. .4 Applicable installation details. .5 General legend and list of abbreviations. .6 Voltage drop computation for all main feeders. .7 Short circuit analysis .8 Provide 1/2" scale floor plan and wall elevations for all electrical rooms.

  • Access Toll Connecting Trunk Group Architecture 9.2.1 If CSTC chooses to subtend a Verizon access Tandem, CSTC’s NPA/NXX must be assigned by CSTC to subtend the same Verizon access Tandem that a Verizon NPA/NXX serving the same Rate Center Area subtends as identified in the LERG. 9.2.2 CSTC shall establish Access Toll Connecting Trunks pursuant to applicable access Tariffs by which it will provide Switched Exchange Access Services to Interexchange Carriers to enable such Interexchange Carriers to originate and terminate traffic to and from CSTC’s Customers. 9.2.3 The Access Toll Connecting Trunks shall be two-way trunks. Such trunks shall connect the End Office CSTC utilizes to provide Telephone Exchange Service and Switched Exchange Access to its Customers in a given LATA to the access Tandem(s) Verizon utilizes to provide Exchange Access in such LATA. 9.2.4 Access Toll Connecting Trunks shall be used solely for the transmission and routing of Exchange Access to allow CSTC’s Customers to connect to or be connected to the interexchange trunks of any Interexchange Carrier which is connected to a Verizon access Tandem.

  • Heating The Hirer shall ensure that no unauthorised heating appliances shall be used on the premises when open to the public without the consent of the management committee. Portable Liquefied Propane Gas (LPG) heating appliances shall not be used.

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