High Volume Runoff Years Sample Clauses

High Volume Runoff Years. During any water year that the City deems to be a high-volume runoff year, Customer may be allowed to have delivered to the Property any early season water volumes that the City deems appropriate to help alleviate potential flooding that could result from high volume runoff. At the City’s sole determination, Customer may receive said high volume runoff water without these volumes being applied to the total amount of water allotted in section 6.-F. above and section 8 below.
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Related to High Volume Runoff Years

  • Contract Year A twelve (12) month period during the term of the Agreement commencing on the Effective Date and each anniversary thereof.

  • Contract Quantity The Contract Quantity during each Contract Year is the amount set forth in the applicable Contract Year in Section D of the Cover Sheet (“Delivery Term Contract Quantity Schedule”), which amount is inclusive of outages.

  • Volume of TIPS Sales Nothing in this Agreement or any TIPS communication may be construed as a guarantee that TIPS or TIPS Members will submit any TIPS orders to Vendor at any time.

  • Heavy Blocks An employee shall not be required to lift a building block in excess of 20 kg in weight unless such employee is provided with a mechanical aid or with an assisting employee; provided that an employee shall not to manually lift any building block in excess of 20 kg weight to a height of more than 4 feet (1.2m) above the working platform.

  • CAISO Monthly Billed Fuel Cost [for Geysers Main only] The CAISO Monthly Billed Fuel Cost is given by Equation C2-1. CAISO Monthly Billed Fuel Cost Equation C2-1 = Billable MWh ◆ Steam Price ($/MWh) Where: • Steam Price is $16.34/MWh. • For purposes of Equation C2-1, Billable MWh is all Billable MWh Delivered after cumulative Hourly Metered Total Net Generation during the Contract Year from all Units exceeds the Minimum Annual Generation given by Equation C2-2. Equation C2-2 Minimum Annual Generation = (Annual Average Field Capacity ◆ 8760 hours ◆ 0.4) - (A+B+C) Where: • Annual Average Field Capacity is the arithmetic average of the two Field Capacities in MW for each Contract Year, determined as described below. Field Capacity shall be determined for each six-month period from July 1 through December 31 of the preceding calendar year and January 1 through June 30 of the Contract Year. Field Capacity shall be the average of the five highest amounts of net generation (in MWh) simultaneously achieved by all Units during eight-hour periods within the six-month period. The capacity simultaneously achieved by all Units during each eight-hour period shall be the sum of Hourly Metered Total Net Generation for all Units during such eight-hour period, divided by eight hours. Such eight-hour periods shall not overlap or be counted more than once but may be consecutive. Within 30 days after the end of each six-month period, Owner shall provide CAISO and the Responsible Utility with its determination of Field Capacity, including all information necessary to validate that determination. • A is the amount of Energy that cannot be produced (as defined below) due to the curtailment of a Unit during a test of the Facility, a Unit or the steam field agreed to by CAISO and Owner. • B is the amount of Energy that cannot be produced (as defined below) due to the retirement of a Unit or due to a Unit’s Availability remaining at zero after a period of ten Months during which the Unit’s Availability has been zero. • C is the amount of Energy that cannot be produced (as defined below) because a Force Majeure Event reduces a Unit’s Availability to zero for at least thirty (30) days or because a Force Majeure Event reduces a Unit’s Availability for at least one hundred eighty (180) days to a level below the Unit Availability Limit immediately prior to the Force Majeure Event. • The amount of Energy that cannot be produced is the sum, for each Settlement Period during which the condition applicable to A, B or C above exists, of the difference between the Unit Availability Limit immediately prior to the condition and the Unit Availability Limit during the condition.

  • Xxxxx Period After payment of the first Dues, the Subscriber is entitled to a grace period of 30 days for the pay- ment of any Dues due. During this grace period, the Agreement will remain in force. However, the Sub- xxxxxxx will be liable for payment of Dues accruing during the period the Agreement continues in force.

  • Mileage Measurement Where required, the mileage measurement for LIS rate elements is determined in the same manner as the mileage measurement for V&H methodology as outlined in NECA Tariff No. 4.

  • Interconnection Customer Payments Not Taxable The Parties intend that all payments or property transfers made by the Interconnection Customer to the Participating TO for the installation of the Participating TO's Interconnection Facilities and the Network Upgrades shall be non-taxable, either as contributions to capital, or as a refundable advance, in accordance with the Internal Revenue Code and any applicable state income tax laws and shall not be taxable as contributions in aid of construction or otherwise under the Internal Revenue Code and any applicable state income tax laws.

  • Night Shift Differential 1. An employee who works an assigned night shift shall, in addition to his or her regular salary, be paid a night shift differential for each hour actually worked on the assigned night shift.

  • Under-Frequency and Over Frequency Conditions The New York State Transmission System is designed to automatically activate a load- shed program as required by the NPCC in the event of an under-frequency system disturbance. Developer shall implement under-frequency and over-frequency relay set points for the Large Generating Facility as required by the NPCC to ensure “ride through” capability of the New York State Transmission System. Large Generating Facility response to frequency deviations of predetermined magnitudes, both under-frequency and over-frequency deviations, shall be studied and coordinated with the NYISO and Connecting Transmission Owner in accordance with Good Utility Practice. The term “ride through” as used herein shall mean the ability of a Generating Facility to stay connected to and synchronized with the New York State Transmission System during system disturbances within a range of under-frequency and over-frequency conditions, in accordance with Good Utility Practice and with NPCC Regional Reliability Reference Directory # 12, or its successor.

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