go to top scroll for more

Micro DE - Modelling the Cost Effectiveness and Potential Uptake of Technologies in Existing UK Residential Buildings

This resource links to a document we hold in our system

Abstract:

The Micro DE project was a scoping and feasibility study to identify opportunities for micro-generation storage and control technology development at an individual dwelling level in the UK. The study investigated the potential for reducing energy consumption and CO2 emissions through Distributed Energy (DE) technologies. This was achieved through the development of a segmented model of the UK housing stock supplemented with detailed, real-time supply and demand energy-usage gathered from field trials of micro distributed generation and storage technology in conjunction with building control systems. The outputs of this project now feed into the Smart Systems and Heat programme.

This deliverable is number 3 of 7 in Work Package 3. it covers

  • WP 3.5.1 Modelling the cost effectiveness and hence potential uptake of technologies and
  • WP 3.2.2 Human Factorsmodelling
The report aims to identify the opportunities to develop micro DE and control technologies and quantify the potential impact on UK domestic energy use by 2040. It also addresses the impact of human interaction in the form of ‘comfort taking’, i.e. using micro DE technologies / improvements in building thermal efficiency to improve occupant comfort through higher internal temperature as opposed to reduction of energy consumption.

The model, and its use and results are discussed under the following headings:
  • Building stock and dwelling variants
  • Technology parameters
  • 2010 constraints
  • 2040 update constraints
  • Model versions
  • Time varying assumptions
  • Micro DE system prices
  • Installations to date
  • Internal temperature correction and “comfort taking”
  • Illustrative model outputs

Publication Year:

2011

Publisher:

ETI

Author(s):

Oreszczyn, T., Hamilton, I., Mavrogianni, A., Oikonomou, E., Raslan, R., Smith, A., Spataru.C. and Stone, A

Energy Category

Class Name:

Subclass Name:

Category Name:

Language:

English

File Type:

application/pdf

File Size:

10858370 B

Rights:

Energy Technologies Institute Open Licence for Materials

Rights Overview:

The Energy Technologies Institute is making this document available to use under the Energy Technologies Institute Open Licence for Materials. Please refer to the Energy Technologies Institute website for the terms and conditions of this licence. The Information is licensed "as is" and the Energy Technologies Institute excludes all representations, warranties, obligations and liabilities in relation to the Information to the maximum extent permitted by law. The Energy Technologies Institute is not liable for any errors or omissions in the Information and shall not be liable for any loss, injury or damage of any kind caused by its use. This exclusion of liability includes, but is not limited to, any direct, indirect, special, incidental, consequential, punitive, or exemplary damages in each case such as loss of revenue, data, anticipated profits, and lost business. The Energy Technologies Institute does not guarantee the continued supply of the Information. Notwithstanding any statement to the contrary contained on the face of this document, the Energy Technologies Institute confirms that it has the right to publish this document.

Further information:

N/A

Region:

United Kingdom

Publication Type:

Technical Report

Theme(s):

Distributed Energy