16 Rose Street, Darwen, BB3 3DN is a leasehold terraced property built between 2003-2006. The property offers approximately 980 square feet of living space. In this location, properties of similar size usually have three bedrooms.

The estimated current market value of the property is £227,214 , which equates to approximately £232 per square foot. It was last sold on 30 Mar 2007 for £144,950. Since then, the value has increased by £82,264, representing a 56.8% increase, or approximately 3.0% per year.

The current estimated value of £227,214 is:

  • 478.4% higher than the average property price on Rose Street
  • 39.8% higher than the average in the BB3 3DN postcode area
  • and 22.2% higher than the average price for Darwen as a whole

View sold house prices in BB3 3DN

Building approximate location

About Property

Type
Terraced House
Built
2003-2006
Interior Size
980 sq ft
Tenure
Leasehold
Price (estimate)
£227,214
Price Per sq ft (estimate)
£232
Bedroom Count (estimate)
3 bedrooms

EPC Summary

16 Rose Street, Darwen, Blackburn With Darwen, Lancashire, BB3 3DN has an Energy Performance Certificate (EPC) rating of C, based on the latest assessment carried out on 10 Feb 2020.

This property uses a gas-fired boiler and radiators, connected to the mains gas supply, as its main heating source. Hot water is provided from the main heating system, though the cylinder has no thermostat. The windows are fully double glazed.

The previous EPC assessment was conducted on 13 Jul 2009, when the property was rated D. Since then, the rating has improved to C, with the energy efficiency score increasing by 14.1%.

Since the previous assessment, several changes were observed:

  • The main heating energy efficiency changing from very good to good, while the heating system type remained the same (boiler and radiators, mains gas).
  • The hot water system was changed from electric immersion, standard tariff to from main system, no cylinder thermostat, with its energy efficiency improving from very poor to average.
  • The roof construction or insulation changed from pitched, 200 mm loft insulation to roof room(s), insulated (assumed), with no change in energy efficiency (good).
  • The wall construction or insulation changed from cavity wall, as built, insulated (assumed) to sandstone or limestone, as built, insulated (assumed), with no change in energy efficiency (good).
  • The lighting was updated from low energy lighting in 58% of fixed outlets to no low energy lighting, with efficiency changing from good to very poor.
Heating Type
Boiler and radiators, mains gas
Good
Hot Water
From main system, no cylinder thermostat
Average
Roof
Roof room(s), insulated (assumed)
Good
Walls
Sandstone or limestone, as built, insulated (assumed)
Good
Windows
Fully double glazed
Good
Lighting
No low energy lighting
Very Poor

Sale History

Today
£227,214
streetscan.co.uk estimate
+57 %
30 Mar 2007
£144,950
Leasehold

Area Insights

Similar Properties Sold Nearby

rooms: 5
size: 883 sq ft
sale price: £105,000
sale date: 12 Nov 2021
rooms: 5
size: 893 sq ft
sale price: £142,950
sale date: 30 Mar 2007

Data Sources

The property at 16 Rose Street, Darwen, Blackburn With Darwen, Lancashire, BB3 3DN appears once in the Land Registry records, with the transaction recorded on 30 Mar 2007. It also has two Energy Performance Certificates (EPC) entries, the earliest dating back to 10 Feb 2020. We use this data, to estimate the property's characteristics and current market value.

This website uses public sector information from:

These datasets are licensed under the Open Government Licence v3.0.
This website is not affiliated with or endorsed by HM Land Registry or DLUHC.


Disclaimer: StreetScan.co.uk makes all reasonable efforts to ensure the information provided on this website is current and accurate; however, no warranties or representations are made as to its completeness or accuracy. StreetScan.co.uk expressly disclaims any and all liability for any loss, damage, or expense arising directly or indirectly from the use of, or reliance upon, such information.