The present invention relates to residential fire sprinkler systems and, more particularly, to a fire sprinkler system assembled as a complete package from UL listed components including but not limited to; Fire pump/motor, electric controller, pipe, fittings, manifold assembly, Ball valve, flow switch, pressure switch, pressure gauge, dual click valve, all mounted on a high density polyethylene base. The invention being designed for residential use with optional water storage tanks.
The use of water to suppress or extinguish fires is a concept as old as fire itself. And, quite probably as long as it has inhabited dwellings, mankind has long sought for the best way to effect the distribution of water within dwellings where the risk of death and destruction from fire is ever present. For many years, fire suppression systems which are installed in buildings have been comprised of a number of water supply lines installed above a ceiling or a suspended ceiling grid, the same grid which normally conceals other building utilities such as heating and cooling ducts, electrical supply lines and lighting fixtures among other things. The water supply lines, in turn are functionally adapted to supply water to sprinkler heads which are actuated by heat sensing means. This is, without question, old art. Various ancillary units support such installations with pumps, valves, sensors and other components to regulate the supply of water during a fire.
Prior art devices however, are limited to discrete components having U.L listed parts such as Pump/motor, U.L. controller being supplied separately and not as a package. Prior art devices do not lend themselves to self installation by homeowners or self/builders in conformity to local building codes because there has been no simple means for assembling discrete components which will perform according to codes. Because of the preponderance of home/building designs, each requiring a fire prevention system of its own, the cost of installing a sprinkler system increases according to the complexity thereof. There has been no inexpensive “plug and play” system which can be selected as a complete unit based upon the code requirements for a particular residence or building. Although the installation of piping and the fitting of sprinklers is a routine matter during construction, the assembly and installation of the components of the pumping system is far from routine and requires special training and experience to match the correct pump/motor combination for a given application. This does not afford any guarantee that these components in combination would perform to U.L standards.
Prior art systems utilize existing water supplies which are plumbed into the residence, these systems are often powered by the domestic power supply. This reliance on public utilities offers scant protection in the event of catastrophic failure of either (or both) the water or power supply.
It is therefore, a principal object of this invention to provide a new, useful and uncomplicated method and apparatus for selecting and installing the ancillary pumping and controlling means for water supplied to fire sprinkler grid in a residence or other building.
It is a further object of the invention to provide 13R and 13D U.L. listed modular units for deployment in various applications depending upon the size of the residence and local codes.
It is a further object of the invention to provide simple charts to facilitate the selection of units for a particular application.
It is a further object of the invention to provide tank storage means for water to supply the chosen system.
It is a further object of the invention to provide tanks sized according to the installation and to provide such tanks either as solid or flexible containers.
It is a further object of the invention to size some of the tanks so they will fit through doors to facilitate retro fitting of the sprinkler system
It is a further object of the invention to provide alternative power sources for the pump units so they are not entirely dependent upon public utility power supplies.
It is a further object of the invention to provide completely packaged compact systems consisting of pump/motor, controller, manifold assembly all mounted on a polyethylene base, pre-wired and piped.
It is a further object of the invention to provide systems ranging in size from 1.5 HP to 10 HP single phase and 5 HP to 15 HP three (3) phase.
The present invention has obtained these objectives. It provides for a fire suppression apparatus suitable for, but not limited to, residential, condo, apartment, mobile home, schools, portable buildings, barns, warehouses, offices, trailers and other applications where water is scarce, where wells and domestic water may have insufficient flow or where organized fire protection is limited or non-existent, said invention comprising a self-contained controllable pumping means which is deployed simply by connecting it to a power and a water source.
The invention offers a choice of both power and water sources, the former including, but not limited to, connection to a solar array/battery supply where there is no municipal power or where such a supply is catastrophically interrupted or an inverter power supply using a battery bank back-up capable of converting from AC to DC in approximately 16 milliseconds. The latter system is designed to provide an instantaneous and secure supply of electricity to the controller and fire pump and can be used for telephone , emergency lighting and security systems. Using three stage auto charging as standard, (including solar if required) the inverter system is automatically protected against over discharging, overload or over charging with reset capabilities. The system is delivered with all wiring included and is provided in either a single inverter unit providing 115 Volts or a double unit providing 230 Volts, each using two U.L. listed sealed (10 year) maintenance/leak free 12 Volt batteries.
The invention provides for a range of motor sizes from 115/230-Single/three phase units from ¾ H.P. connecting to an appropriately sized (according to code specifications) centrifugal pump having a casing, impeller and shaft of stainless steel construction and AISI-304L liquid handling components for corrosion resistance and long life. The pump/motor combination being mounted on a corrosion resistant high density polypropylene base.
The invention controller component is contained within a strong, steel U.L. Listed NEMA-3R enclosure with a locking door (see U.L. Book Page 4). The control system contained therein is provided for automatic pump operation. The control panel has power on pilot lights, voltage line meters, time delay, manual start push button,emergency mechanical run button with hold down mechanism, pressure switch. The controller is supplied ready to be connected to a power source. The invention pump/manifold assembly is constructed using all brass fittings and includes a 1″ dual check valve with a U.L. water pressure gauge, U.L. Listed pressure and water flow switches, a 1″ U.L. brass full port ball valve with a locking handle for security. The invention pump manifold assembly is supplied ready to be connected to Electric sprinklers and is used with one of the water supply storage tanks.
The invention water tanks range in size from a 300 gallon, 33″×92″ which will fit through a standard 36″ door up to 30,000 gallon tanks for above or below ground.
The foregoing and other features of the method and apparatus of the present invention will be further apparent from the detailed description which follows.
Referring now to the drawings in which like and corresponding numbers designate like and corresponding parts throughout the several views, in
Controller 25 enclosure is a strong, steel, U.L. Listed, NEMA-3R, with a locking door for security. Controls are designed to provide complete automatic pump operation. All components are pre-wired including a terminal strip. The control panel is clearly marked with a digital meter display for volts and amps. Referring to
In
“To determine the pump horsepower, first determine the flow required and the pressure needed at the highest elevation. The flow is the result of which sprinkler head is (to be) used and whether one, two or more heads will be used for the final calculation.
The design pressure will be the pressure in P.S.I. that will be required by the sprinkler head at the furthermost point. Add in for elevation and friction loss in the pipe for the final total pressure requirement. The local authority will outline the parameters that must be followed.
Once the operating conditions are determined, enter the chart by matching the flow across the top and then move down the row until lined up with the desired pressure located on the left side of the chart. The horsepower of the system has been determined.
The above detailed description of the present invention is given for explanatory purposes. It will be apparent to those skilled in the art that numerous changes and modifications may be made without departing from the scope of the invention. Accordingly, the whole of the foregoing description is to be considered in an illustrative and not a limitative sense, the scope of the invention being defined solely by the appended claims.
Number | Name | Date | Kind |
---|---|---|---|
1585146 | Himberger | May 1926 | A |
1694574 | Witter et al. | Dec 1928 | A |
3770060 | Forsyth et al. | Nov 1973 | A |
4037664 | Gibson | Jul 1977 | A |
4488603 | Schmittmann et al. | Dec 1984 | A |
4729434 | Rohrbach | Mar 1988 | A |
5553673 | Hackman | Sep 1996 | A |
6719065 | Baughman | Apr 2004 | B2 |