kWh Sample Clauses

kWh. J. The Parties hereby agree to execute this Power Purchase Agreement setting out the terms and conditions for the sale of power by SPD to SECI.
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kWh. An abbreviation for the basic unit of measure of electric energy, "kilowatt hours".
kWh. In case of partial rejection as- tora confirms the nominated quantity partially. Moreover astora shall be entitled to reject any Nomination or Renomi- nation, which infringes the provisions of the Storage Services Agree- ment.
kWh. 4. Determine TEC Requirement for the computer by adding any capability adjustments (step 2) to the Base TEC requirement (Table1). – Table 1 (for notebooks): Notebook Computers (kWh) Category A 40 Category C 88.5 – ENERGY STAR TEC Requirement = 40 kWh + 1.6 kWh = 41.6 kWh
kWh. The income (power fee revenue) is RMB 17.22 Million. In 2006, its contracted grid power was 99.5 million KWH, but the actual grid power was 119.07 KWH. The income (power fee revenue) is RMB 16.57
kWh. The Expected Term Year Energy Production may be revised based on changes in the Site Host Load or the Site Host thermal requirements; provided, however, that such revision must be supported by a certification from a California-licensed professional engineer qualified to make a representation affirming that such revision is reasonable and based on changes in the Site Host Load or the Site Host thermal requirements. Such certification must include all data relied on to support the revised Expected Term Year Energy Production. {Buyer Comment: Expected Term Year Energy Production cannot exceed Net Contract Capacity at 100% capacity factor applied over the Term Year.}
kWh. The service may not be used for any natural gas quantity exceeding this quantity.
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kWh. For the WHTC, the final test result shall be a weighted average from cold start test and hot start test according to the following equation: 𝑒 = (0,14×𝑚cold)+(0,86×𝑚hot) (0,14×𝑊act,cold)+(0,86×𝑊act,hot) Where:
kWh. A unit of energy equivalent to one kW of power expended for one hour.
kWh. Future energy market developments as well as increasing requirements on grid stability will change this situation within the upcoming decade. To already meet these challenges, the considered retrofitted buildings will be analyzed with the developed simulation models to identify break-even conditions and future state of the market regarding suitable storage sizing and integration measures. We will model the integration of a larger district storage system > 100 kW with interface to EMS (Action 5). In addition to this: Since physical integration of a multi-dimensional district storage of larger capacity > 100 kWh is not possible due to the existing technical restrictions (ratio of generated energy to consumed energy), two different feasible approaches are pursued:
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