Schematic Diagram Clause Samples
Schematic Diagram. The power demand of the Sunamp PCM heat batteries available for installation are rated at approximately 2.8kW, or multiples of this if installed in conjunction with additional units in order to meet greater thermal demand. This is the same for all of the units available to the SMILE project. The storage capacity of the installed units can be scaled in order to meet the specific required of participating households; principally dependent upon the daily requirements on hot water. The scales that would be considered for this install configuration would be 3, 6, 9 or 12kWh. The models are designed for internal deployment, and in many cases can be installed in under-counter spaces. The four models all have the same footprint (370 x 575mm), but vary in height (410, 605, 815 and 1,025mm, respectively). For the storage capacity available, this requires approximately 1/3 of the cupboard space of an equivalent hot water thermal store in application. For this installation, each property will also receive a single gateway device that will allow VCharge’s (OVO) VNet to communicate with the Sunamp heat battery’s Qontroller, a separate unit from the battery, and internal heating element. This will utilise the homeowners own internet connection in order to facilitate this communications link. This type of install will have the benefit of: ● Being able to respond quickly to curtailment events; ● Prove a technological solution to homes not suitable for ASHPs; ● Potentially reduce the space required for thermal storage compared to conventional hot water cylinders; ● Reduced heat loss through higher efficiencies, and by extension, this has the potential to increase the effective use of property’s pre-existing fossil fuel-based energy systems; Potential disadvantages of the type 1 install include; ● Product is new from Sunamp and could have risks in deployment as it is not as tried and tested as other products; ● Coefficient of performance of 1 maximum, which is lower than the option with an ASHP (which has a value of 3) but may be better at responding to curtailment events;
Schematic Diagram. Figure 2. Schematic diagram of the ISP1122 demo board
Schematic Diagram. For this installation, a VCharge (OVO) gateway unit will allow communication between VCharge’s (OVO) VNet aggregator system and the property’s heating and hot water system. This will utilise the homeowners own internet connection in order to facilitate communication links to the controllers of the ASHP and the Sunamp heat battery. The electricity demand of the install will be determined by the size of the heat pump suitable for the property, and the rating of heating elements within the Sunamp PCM heat battery. The principle design will call for installation of high temperature air to water Daikin Altherma heat pumps. Typical installs will have a thermal output of between 11kW and 16kW; with rated power inputs of between 4kW and 6kW, respectively. In comparison, the power demand of the Sunamp PCM heat battery is rated at approximately 2.8kW; this is the same power demand for the units available to the SMILE project. However, these units can be deployed series with additional units to meet greater demand. As such, power demand could be 5.6kW, or even 8.4kW. The individual units can be suitably scaled in order to meet the specific requirements of participating households; principally dependent upon the daily demand on hot water. The scales of units that would be considered for this install configuration would be 3, 6, 9 or 12kWh. The models are designed for internal deployment, and in many cases installed in under counter spaces. The four models all have the same footprint (370 x 575mm), but vary in height (410, 605, 815 and 1,025mm, respectively). The advantages to type 2 installations are: ● Well proven combination of hardware within Sunamp pre-existing projects; ● Coefficient of performance of up to 3 through the use of ASHPs; ● Charging electrically will allow for quick response to curtailment; and ● Compact heat store, due to the high energy efficiencies compared to conventional hot water cylinder. Potential disadvantages to this approach include: ● Product is new from Sunamp and could have risks in deployment as it is not as tried and tested as other products; and ● Heat pump response to curtailment (how often they can be turned on and off; when first started they have to run for a certain time, and also when turned off they have to wait for some time before they can be turned on again)
Schematic Diagram. 6.1. Exhibit B-1, attached hereto and made a part hereof, is a schematic diagram showing the major circuit components connecting the Facility with the Company's electrical system and showing the Point of Delivery and the Point of Metering and/or Point of Ownership, if different. All switch number designations initially left blank on Exhibit B-1 will be inserted by the Company on or before the date on which the Facility first operates in parallel with the Company's system.
