113 Abbigael Dr, Portland, TN 37148
- 3 beds |
- 2 baths |
- 1,624 sqft
Single-Family Home
Built in 2007
0.41acre lot
2 car garage
$234/sqft
Listed 1 month ago
Property Description
Welcome to 113 Abbigail Drive in Portland, Tennessee! Nestled in an established and highly desirable neighborhood, this charming 3-bedroom, 2-bath home offers 1,624 square feet of comfortable living space designed for both everyday living and entertaining. Step inside to find a spacious and inviting floor plan featuring a versatile bonus room that can serve as a home office, playroom, media room, or additional living space to fit your family's needs. The attached garage provides convenience and extra storage, while the fenced backyard creates the perfect setting for pets, children, outdoor gatherings, or simply relaxing after a long day. Location is everything, and this home delivers. Enjoy being within walking distance of Watt Hardison Elementary School and just minutes from Richland Park, offering recreation, sports, walking trails, and community activities. With its combination of space, functionality, and prime location, this home is an excellent opportunity for families, first-time buyers, or anyone looking to enjoy all that Portland has to offer. Don't miss your chance to make this wonderful property your next home!
- Listing Status:
- Active
- Date Added:
- May 29, 2026
- Data Last Updated:
- June 24, 2026 at 11:21PM
- Listing Office:
- Jetton Homes, LLC : 6156367296
- Listing Agent:
- Brian Woodall : 6156367296
- MLS ID:
- 3224942

- Style: Contemporary
- Other Structures: PorchCovered
- Parking: Garage Faces FrontConcreteParking spaces: 4
- Roofing: Shingle
- General: One
- Originating MLS: realtrac
- County: Sumner CountyTN
- Topography: Level
- Zoning: 020O C 00700 000
- Fencing: Back Yard
- Utilities: Water Available
- Water: Public
- Sewer: Public Sewer
- Source: realtrac
This listing courtesy of Brian Woodall , Jetton Homes, LLC
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






