Sunday, 26 January 2014

The Future of Energy Bills

Getting to an inflation rate for domestic energy





Electricity generating renewable energy technologies have been sold as financial investments as much as energy saving products since the Feed in Tariff was launched in the UK.  These financial returns can be very sensitive to assumptions about the future of electricity costs.

The Department of Energy and Climate Change (DECC) has revealed that its own modelling is based on an assumed of electricity cost inflation of 2.6% a year over and above general price inflation (this figure is called the real rate of inflation).  Responsible industry bodies such as the Solar Trade Association have used this rate of inflation for calculating the financial returns from solar photovoltaic systems.

In 2014 a range of renewable heat generating technologies such as heat pumps, wood pellet stoves and solar heating panels will benefit from a ‘Feed-in tariff for heat’ called the domestic Renewable Heat Incentive.  In presenting the financial case for these technologies, industry will need credible assumptions of future costs for domestic gas and heating oil as well as electricity.

Where has the 2.6% figure come from for electricity?  What are the equivalent values for heating oil and for gas?

The Past as a Guide to the Future


No one has a crystal ball to know about price rises in future, so it’s common to substitute a simpler question “What have energy price increases been in recent times?”

DECC publishes data collected by the Office for National Statistics in compiling the Consumer Prices Index (CPI).  The table below shows prices of various fuels for the most recently published data range that covers the fourteen years from 1998 to 2012.

source:  https://www.gov.uk/government/statistical-data-sets/monthly-domestic-energy-price-stastics
The chart at the top of the page shows the prices from the table rebased to set prices in 1998 to 100.


General inflation increased costs by 37% over the whole for the fourteen-year period.  It can be seen that all energy costs have risen by much more. Electricity has risen by 100% in the same time, gas by 195% and heating oil by 428%.

What can also be seen is that prices have not risen steadily.  Fuel oil prices in particular are volatile with prices falling back before rising steeply again.  Any measure of fuel inflation is therefore very sensitive to the choice of start and finish date of the period considered, a fact that can be used by those who want to present a biased picture.  For example choosing a period from 2000 to 2009 produces a real inflation rate of 4.7% a year for heating oil, whereas selecting 1998 to 2008 yields an eye-watering 14.3%.

If our goal is to assess an unbiased and justifiable inflation rate for industry to use to present financial to potential customers, then we need to make sure that we're not open to such criticism.  I calculated the real rate of inflation for each and every start and finish date possible in the data set. 

The chart below shows the resulting rates of real annual inflation plotted against the length of the period for domestic electricity prices. 




Predictably, the shorter the period considered the wider the range of results, which narrow as the period covered lengthens.  Also shown on the plot is the average for each period length (diamond shape).  The best fit line for the averages is a real rate of inflation of 2.8%, an identical figure to that used by DECC for forecasting future price changes of electricity.

The analysis was repeated to produce a real rate of inflation of 5.8% for gas and 8.5% for heating oil.





Based on this analysis of government statistics, the rate of energy price rises above inflation can be summarised as:

Fuel Type
Real Rate of Inflation
Electricity
2.6%
Gas
5.8%
Heating Oil
8.5%





Tuesday, 21 January 2014

Zero Carbon Homes Hierarchy

The Trouble with Triangles

The governments Zero Carbon Homes (ZCH) policy was launched in 2007 with the aim of reducing the carbon emissions from new homes built in the UK to 'near zero'.  I've written in the past about how this policy has been successively watered down and why the argument put forward in support of 'easing the cost burden on house-builders' is fundamentally flawed.

Recently, however, I started to wonder about the way the proposed structure of the ZCH policy was presented.  No government pronouncement on ZCH is complete without a pictorial representation of the ZCH Hierarchy.



The misleading qualities of geometry?


This image, reproduced from the recent DCLG consultation on Allowable Solutions, is shown above.  I have carefully scaled the triangle from this document for reasons that will become apparent when you read on...

The base of the triangle represents the carbon emissions from a dwelling built to 2006 Building Regulations, and the top of the triangle represents the 'pinnacle of achievement' that is a Zero Carbon Home.  The layers of the triangle represent different parts of the proposed policy. 

Starting at the bottom, we have the Fabric Energy Efficiency Standard (FEES).  The idea is that developers should 'build-in' efficiency gains to the property first through higher levels of insulation, lower draughtiness and installing an efficient heating system.  Government plans to legislate a minimum standard the home must achieve with such measures.  This concept was recently implemented into Building Regulations for the first time in the 2013 version.

The next layer up the triangle  is called "Carbon Compliance".  It represents the reduction of carbon emissions on-site through the use of low and zero carbon technologies such as solar panels.  Government plans to set a minimum level of carbon reduction that must be achieved on site.

Finally, for that difficult to achieve 'last little bit' the developer can buy their way out of building the energy saving into the house and instead pay into a fund - details to be confirmed.

The shape of the triangle produces a reassuring impression that the heavy lifting is going to be done by measures actually on the property, and that only the last little bit will be simply 'bought'.

Hang on.  Let's have a look at the actual figures.  Government is favouring proposals from the Zero Carbon Hub.  In their report, "Fabric Energy Efficiency for Zero Carbon Homes", the proportion of carbon reduction from each type of measure can be derived from the figure on the last page.  I have tabulated the values below:



In every case, the bought-in Allowable Solutions represents the largest part of the savings.  If the Zero Carbon Triangle were to be re-drawn so that the area of each section represented their relative contributions, it would look very different.


How it ought to look
Of course, if developers use the Allowable Solutions mechanism then the energy bills for householders purchasing a so-called 'Zero Carbon' house will be much higher than if developers choose to meet the target wholly with fabric improvements and renewable energy on the building itself.

Let's at least not kid ourselves about how far away from delivering zero carbon on the ground we might be by accepting misleading graphics at face value.












Wednesday, 18 December 2013

What does Energy Cost?

Where can you find authoritative data on energy prices?




The energy savings from solar heating is the main economic argument for choosing to install a system, and this will continue to be the case even with the imminent arrival of the domestic Renewable Heat Incentive in the spring of next year.  For solar PV systems the fall in cost of equipment and installation and the accompanying reduction in the Feed in Tariff means that own-use savings on electricity bills have become a much more significant component of the economic justification.
Energy prices have been changing rapidly, so it’s important for renewable energy businesses to have access to up-to-date, accurate and trustworthy price information to show to customers when modelling the financial benefits from their investment.

A quick survey of colleagues at a recent Solar Trade Association meeting produced the following list of resources.  Do you have any to add?  Please use the comments section below.


UK Government Statistics


There’s a wealth of energy statistics on the gov.uk website, and the challenge can be finding the information you want.


By their nature, the statistics are backward-looking so often more than 12 months out of date.

Energy prices are often presented either as ‘average energy bills’ or stated as a percentage of 2005 costs.  The best source I could find was in the Quarterly Energy Prices publication, in which the following two tables show the unit price of energy:

Table 2.2.3 Average annual domestic electricity bills in 2012 for selected towns and cities in the UK with average unit costs

Table 2.3.3 Average annual domestic gas bills in 2012 for selected towns and cities in the UK with average unit costs

Sutherland


The Sutherland tables are a fixture of the energy industry, compiled quarterly since 1976 they show domestic energy costs heating and hot water costs across a range of standard house types across the UK.  The data is apparently used by government in preparing its own statistics, but there is a cost to accessing the data.


Boilerjuice


Boilerjuice.com is an online quotation website for heating oil.  It publishes average prices of UK heating oil:

http://www.boilerjuice.com/heatingOilPrices.php

Nottingham Energy Partnership


NEP publishes current average prices for electricity, gas, and heating oil together with many other fuels.  Also available are reports analysing trends over time.  This was the most relevant reference I could find for current energy prices.

http://www.nottenergy.com/energy_cost_comparison/
 


Do you know of any resources you can share?  If so, please let us know in the comments section below.



 

Friday, 6 December 2013

Domestic RHI - When can I join?

More clarity on legacy applications

simple!

If you have installed a qualifying renewable heat installation since 15th July 2009, you can join the domestic Renewable Heat Incentive (RHI) when it starts next spring and collect seven years' worth of payments.

The Department of Energy and Climate Change (DECC) published further details this week on the RHI that among other things outlines how applications from so-called 'legacy' applicants will be managed.  Application dates will be staggered as shown in the diagram above in an effort to prevent the administration of the scheme being overloaded.

Installations that did not receive a Renewable Heat Premium Payment (RHPP) voucher can apply from the day the scheme launches until the end of 12 months from launch.

Installations that received an RHPP voucher with an application date before May 2013 can apply from 3 months after the scheme opens for a period of 9 months.

All other installations (those that received an RHPP voucher with application date after May 2013) can apply from 6 months after the scheme opens for a period of 6 months.