Desa VMH3000TPA Providing Adequate Ventilation, Determining FRESH-AIR Flow for Heater Location

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AIR FOR COMBUSTION AND VENTILATION

Providing Adequate Ventilation

Determining Fresh Air Flow For Heater Location

AIR FOR COMBUSTION AND VENTILATION

Continued

PROVIDING ADEQUATE VENTILATION

The following are excerpts from National Fuel Gas Code, ANSI Z223.1/NFPA 54, Section 5.3, Air for Combustion and Ventilation.

All spaces in homes fall into one of the three following ventilation classifications:

1.Unusually Tight Construction

2.Unconfined Space

3.Confined Space

The information on pages 5 through 7 will help you classify your space and provide adequate ventilation.

Unusually Tight Construction

The air that leaks around doors and windows may provide enough fresh air for combustion and ventilation. However, in buildings of unusually tight construction, you must provide additional fresh air.

Unusually tight construction is defined as construction where:

a.walls and ceilings exposed to the outside atmosphere have a continuous water vapor retarder with a rating of one perm (6 x 10-11kg per pa-sec-m2) or less with openings gasketed or sealed and

b.weather stripping has been added on openable win- dows and doors and

c.caulking or sealants are applied to areas such as joints around window and door frames, between sole plates and floors, between wall-ceiling joints, between wall panels, at penetrations for plumbing, electrical, and gas lines, and at other openings.

If your home meets all of the three criteria above, you must provide additional fresh air. See Ventilation Air From Outdoors, page 7.

If your home does not meet all of the three criteria above, proceed to Determining Fresh-Air Flow for Heater Location.

Confined and Unconfined Space

The National Fuel Gas Code, ANS Z223.1 defines a confined space as a space whose volume is less than 50 cubic feet per 1,000 Btu per hour (4.8 m3 per kw) of the aggregate input rating of all appliances installed in that space and an unconfined space as a space whose volume is not less than 50 cubic feet per 1,000 Btu per hour (4.8 m3 per kw) of the aggregate input rating of all appliances installed in that space. Rooms communicating directly with the space in which the appliances are installed*, through openings not furnished with doors, are considered a part of the unconfined space.

*Adjoining rooms are communicating only if there are doorless passageways or ventilation grills between them.

DETERMINING FRESH-AIR FLOW FOR HEATER LOCATION

Determining if You Have a Confined or Unconfined Space

Use this work sheet to determine if you have a confined or unconfined space.

Space: Includes the room in which you will install heater plus any adjoining rooms with doorless passageways or ventilation grills between the rooms.

1.Determine the volume of the space (length x width x height). Length x Width x Height = ___________ cu. ft. (volume of space)

Example: Space size 20 ft. (length) x 16 ft. (width) x 8 ft. (ceiling height) = 2560 cu. ft. (volume of space)

If additional ventilation to adjoining room is supplied with grills or open- ings, add the volume of these rooms to the total volume of the space.

2.Multiply the space volume by 20 to determine the maximum Btu/Hr the space can support.

__________ (volume of space) x 20 = (Maximum Btu/Hr the space

can support)

Example: 2560 cu. ft. (volume of space) x 20 = 51,200 (maximum Btu/Hr the space can support)

3.Add the Btu/Hr of all fuel burning appliances in the space.

Vent-free heater

 

_____________ Btu/Hr

Gas water heater*

 

_____________ Btu/Hr

Gas furnace

 

_____________ Btu/Hr

Vented gas heater

 

_____________ Btu/Hr

Gas fireplace logs

 

_____________ Btu/Hr

Other gas appliances* +

_____________ Btu/Hr

Total

=

_____________ Btu/Hr

*Do not include direct-vent gas appliances. Direct-vent draws com- bustion air from the outdoors and vents to the outdoors.

Example:

 

 

 

Gas water heater

 

30,000

Btu/Hr

Vent-free heater

+

30,000

Btu/Hr

Total

=

60,000

Btu/Hr

4.Compare the maximum Btu/Hr the space can support with the actual amount of Btu/Hr used.

__________________ Btu/Hr (maximum the space can support)

__________________ Btu/Hr (actual amount of Btu/Hr used)

Example: 51,200 Btu/Hr (maximum the space can support) 60,000 Btu/Hr (actual amount of Btu/Hr used)

For..com

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Contents What to do if YOU Smell GAS 15,000 to 30,000 Btu/Hr With ThermostatTable of Contents Safety InformationLocal Codes Product IdentificationUnpacking Product Features Assembling HeaterAttaching Brass Front Trim to Front Panel AssemblyAIR for Combustion and Ventilation Assembling and Attaching Brass TrimUnusually Tight Construction Providing Adequate VentilationDetermining FRESH-AIR Flow for Heater Location Confined and Unconfined SpaceVentilation AIR Ventilation Air From Inside BuildingVentilation Air From Outdoors Check GAS Type InstallationInstallation Items Locating HeaterInstallation Options Thermostat Sensing BulbMounting Heater to Wall Installing Bottom Mounting Screws Mounting Heater on Optional Hearth BasePlacing Heater On Mounting Bracket Securing Hearth Base to Floor Mounting Heater to Optional Hearth BaseSee Instructions Included With Mantel Kit Assembling Mantel Connecting to GAS Supply Internally-tinned copper tubing may be used in cerPressure Testing Gas Supply Piping System Pressure Testing Heater Gas ConnectionsChecking GAS Connections For Your Safety Read Before Lighting Operating HeaterLighting Instructions Inspecting Burner Cabinet Cleaning MaintenanceCleaning Burner Injector Holder and Pilot AIR Inlet Hole Air PassagewaysTroubleshooting Observed Problem Possible Cause RemedyMaintenance, Observed Problem Possible Cause Service Hints SpecificationsReplacement Parts Technical ServiceAccessories Illustrated Parts Breakdown RFN30TA RFP30TA VMH3000TNA VMH3000TPAParts List NJF-8CParts Centrals FBDOwners Registration Form Postage Required 109889 Not a UPC

VMH3000TPA specifications

The Desa VMH3000TPA is a state-of-the-art heating appliance designed to deliver efficient warmth while ensuring user comfort and convenience. This model is widely recognized for its innovative technologies, smart design, and eco-friendly features, making it an ideal choice for residential spaces.

One of the standout features of the VMH3000TPA is its powerful heating capacity. With a robust output of 30,000 BTUs, it is engineered to heat large areas effectively, making it perfect for living rooms, open-plan spaces, or even workshops. Users can expect a consistent and reliable warmth throughout the chilly seasons, enhancing home comfort while reducing reliance on traditional heating systems.

The VMH3000TPA incorporates advanced heating technology, including a variable speed blower that allows for more efficient heat distribution. This feature ensures that warm air circulates evenly throughout the room, eliminating cold spots and creating a cozy atmosphere. Additionally, the unit has a programmable thermostat, allowing users to set and maintain their desired temperature easily.

For safety, the VMH3000TPA is equipped with multiple safety features, including an automatic shut-off function that activates if the unit overheats or tips over. This ensures peace of mind, especially in households with children or pets. Its durable construction includes a fireproof casing and a heat-resistant glass front, designed to withstand high temperatures while maintaining an attractive appearance.

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In summary, the Desa VMH3000TPA stands out in the heating appliance market for its powerful performance, intelligent features, energy efficiency, and safety standards, making it a worthy investment for modern households seeking comfort and reliability during the colder months.