Efficiency Factor definition
Examples of Efficiency Factor in a sentence
The monthly On-Peak CLQ(s) and Off-Peak CLQ(s) shall be multiplied by the Delivery Efficiency Factor to determine the monthly On-Peak SBA(s) and Off-Peak SBA(s).
All Storage Product shall be paid on a monthly basis at the Storage Rate multiplied by 1,000, multiplied by the Storage Contract Capacity for such month, as adjusted for the most recent Storage Capacity Test, multiplied by the Round-Trip Efficiency Factor, multiplied by the Availability Adjustment for such month (as determined under Exhibit P) and pro-rated for the first and last month of the Delivery Term if the Delivery Term does not start on the first day of a calendar month.
The Base Rate for electrical power costs applicable to such gathering system shall equal to $** per KWH, and the Efficiency Factor applicable thereto shall be as set forth in Appendix 1.
If , then the “Energy Efficiency Capacity Payment Reduction”, using the deviation from the Guaranteed Efficiency Factor Min ( ) for month m calculated pursuant to Section 9.06(b), is calculated as follows: Energy Efficiency Capacity Payment Reduction m = (Monthly Energy Capacity Payment – (Rated Power Capacity Payment Reduction + A/S Capacity Payment Reduction)) * *-1.
All Storage Product shall be paid on a monthly basis at the Storage Rate multiplied by 1,000, multiplied by the Storage Contract Capacity for such month, as adjusted for the most recent Storage Capacity Test, multiplied by the Round-Trip Efficiency Factor, multiplied by the Availability Adjustment for such month (as determined under Exhibit P).
The total amount of Energy Out (as reported in Part II.B above) divided by the total amount of Energy In (as reported in Part II.B above), and expressed as a percentage, shall be the new Efficiency Rate, and shall be used for the calculation of the Round-Trip Efficiency Factor used in Exhibit C until updated pursuant to a subsequent Storage Capacity Test.
The Base Rate for actual electrical power costs applicable to the Fractionator shall equal to $** per KWH, and the Efficiency Factor applicable thereto shall be as set forth in Appendix 1.
If Haverhill elects to Sparge at such request, then Haverhill shall not be obligated to pay for the Natural Gas used in Sparging to produce such additional Steam and such additional Steam shall be delivered to Sunoco at no cost based upon the Sparging Efficiency Factor.
The Base Rate for such Fuel Gas Cost shall be equal to $** per MMBtu, and the Efficiency Factor applicable thereto shall be as set forth in Appendix 1.
The Incremental Cost of generation from CECo’s portion of the Ludington Plant is determined by the cost of Resources used to pump water into the plant’s reservoir and the Pumping Efficiency Factor.