The outgoing phase of the work implemented a national and local level electricity demand model for New Zealand. Main results achieved:
- the archival of a clean version of the GREENGrid household electricity demand monitoring data with the UK Data Archive for third party re-use. This data archive is supported by an R package prepared by the Researcher (
https://cfsotago.github.io/GREENGridData)(öffnet in neuem Fenster);
- analysis of the contribution of lighting, hot water, space heating (via heat pumps) to demand profiles;
- analysis demonstrating that the literature on energy demand reduction is beset with under-powered studies using biased samples that can rarely be generalised;
- development of a complex reweighting approach to provide national level estimates constrained by NZ Census 2013 population totals;
- an analysis of the potential consequences of the uptake of LEDs, of curtailing peak demand and of switching to more efficient heating (heat pumps);
- an analysis of the charging patterns of a sample of up to 50 domestic electric vehicles in partnership with a NZ EV owners club (FlipTheFleet;
- development of an Area Unit level temporal electricity demand model for the regions of Taranaki and Hawke's Bay
The return phase of the work implemented a similar model for the South East of England. Main results achieved:
• contribution to the deposit of the UK SAVE data (Rushby et al. 2020) at the UK Data Service for third part re-use for non-commercial research;
• development of proof-of-concept model for the Solent region (Southampton, Portsmouth, Isle of Wight and Hampshire);
• application to local area modelling of demand response trial impacts in the Solent region;
• development of local area scenario models of the impacts of transition to a number of low-carbon heat or electricity demand response interventions with a particular focus on areas such as the Isle of Wight which have both a high penetration of PV and constrained low voltage networks.
In addition a number of other analyses have been conducted as part of the Fellowship:
1. Analysis of local air quality in Southampton during COVID19 lockdown;
2. Analysis of disruption to national and local electricity demand patterns during lockdown in the UK and New Zealand;
3. Modelling of the potential for ultra-low energy input retrofits (e.g. passiv haus standard) to reduce long term heat energy demand in New Zealand.