Showing posts with label winter. Show all posts
Showing posts with label winter. Show all posts

Wednesday, 4 February 2015

One year on: reviewing the floods of 2013/2014

This month’s issue of Weather, the journal of the Royal Meteorological Society, takes a look back at last winter, asking “How unusual were the storms and floods experienced by many areas of the UK during late 2013 and early 2014?”

As well as papers on the weather systems (Kendon and McCarthy) and coastal flooding (Sibley et al), Katie Muchan from CEH together with colleagues Jamie Hannaford and Simon Parry, and Melinda Lewis of the British Geological Survey, review the inland flooding, which included prolonged river flooding in many areas – notably on the Somerset Levels and in the Thames Valley – and the opening of a large number of sinkholes, bringing damage to property and affecting livelihoods.

Walking through flood water. Photo: Julia Lawrence

In the paper, Katie and her colleagues outline several key aspects of the events of last winter, concluding:
“A defining aspect of the winter was the occurrence of multiple types of flooding. The combination of coastal, pluvial, fluvial and groundwater flooding in winter is not unusual, but its extent, frequency and severity through the winter of 2013/2014 was extraordinary.” 

They add, “The simultaneous occurrence of multiple types of flooding and other weather hazards presented a major challenge for the emergency services.”

Data from the National Hydrological Monitoring Programme (NHMP) forms the source of much of the material discussed in the Muchan et al paper.

Average winter outflows (m3s-1) for Great Britain 1961-2013


The NHMP, mentioned on many previous occasions in this blog, collates data for 104 index river flow gauging stations and 37 index groundwater boreholes in the UK, and produces monthly Hydrological Summaries.

Related links


Full citation for the paper: Muchan K, Lewis M, Hannaford J & Parry S (2015) The winter storms of 2013/2014 in the UK: hydrological responses and impacts, Weather, 70(2), 55-61. It is open access.

Weather, Special Issue: The storms of winter 2013/2014 in the UK 

Monthly Hydrological Summaries for the UK

More on the NHMP: Rainfall, UK floods and the potential impacts of climate change? 6 January 2014

Thursday, 11 September 2014

Potential influences on the United Kingdom's floods of winter 2013/14

Last winter severe flooding affected large parts of the UK. In a recent paper published in Nature Climate Change, scientists at the Centre for Ecology & Hydrology, working with colleagues from the Met Office and a number of universities, looked at the possible drivers behind the floods.

Dr Chris Huntingford, the lead author of the paper, explains:

In this paper, along with my co-authors, we have tried to provide a summary document that collates and discusses all possible drivers behind the major flood events that affected the UK last winter. It has three themes.

First, a very brief overview of the large-scale meteorological events leading up to the storms is presented. None of the individual rainfall events was unprecedented, but the weather patterns behind them persisted for three months causing a near-continuous succession of Westerly storms. This had the cumulative effect that for much of the Southern UK, the total winter rainfall was record-breaking. Preliminary analysis suggests that particularly warm ocean conditions and heavy rainfall in and around Indonesia triggered wind patterns across the Pacific that travelled northwards before ultimately drawing cold air down across the USA. This in turn forced a particularly strong and persistent Jet Stream across the Atlantic and towards the UK. The Met Office is now studying this sequence of events in significantly more detail. In our paper, we show how the winter storms affected river flows, and place the events within a historical context.

Flooding in Oxfordshire, February 2014. Photo: Julia Lawrence

Second, questions mount as to whether fossil fuel burning could have a role. We have reviewed existing research literature for Earth system factors that may be both changing through global warming, and additionally are identified as influences on storm features for the UK. As expected, this confirms how complex and inter connected the climate system is. Multiple possible UK rainfall drivers are identified that link to the state of the oceans, the atmosphere and sea-ice extent. Interestingly the recent rapid decrease in Arctic sea-ice that is widely attributed to global warming, for the UK at least is often portrayed as likely to bring more Easterly winds and colder conditions. The previous three winters had these features for some of the time, in marked contrast to winter 2013/14. Although the precise details of linkages between changing large-scale features of the climate system and UK rainfall intensity are still not fully understood, we hope our review article is a complete list of such connections. To apply that frequently used expression, we trust there are no “unknown unknowns” lurking out there we have yet to consider.

Third, we provide some thoughts on how best to proceed. Assuming that we do have a pretty good idea of all drivers expected to affect rainfall, and that require on-going computer modelling, three challenges are noted. These are: (1) the need for continued enhancement of physical process representation via ever better parameterized differential equations of the oceans, atmosphere and ice sheets, (2) increase further the numerical grid resolution of climate models, on which these equations are calculated and (3) undertake significantly higher numbers of simulations, all with slightly different initial conditions, creating a large ensemble of projections. The call for better resolution is because some characteristics of storms occur on fine spatial detail, thus needing small spacings between gridpoints on which calculations are updated. The request for large ensembles is because extremes, by definition, are rare events, and so we need to ensure that all heavy rainfall “return times” are fully sampled. This is both for pre-industrial and for raised levels of atmospheric greenhouse gases.

During the major flood events affecting much of Southern England from December 2013 to February 2014, it was inevitable that questions would be asked as to whether fossil burning could have a role. It is always (and correctly) stated that no single observed extreme event can be formally attributed to human-induced changes to atmospheric composition. But a statistic can be derived that assesses any changing probability of a particular extreme event occurring, a quantity sometimes referred to as “Fractional Attributable Risk”. By satisfying the three challenges we listed above, we will get near to stating if humans are increasing, decreasing or leaving invariant the chances of rainfall events of the type witnessed. However, even now limitations remain on computer speed and resource, and expenditure on climate research can only ever be finite. Hence an especially lively debate will now occur as to what constitutes the optimal balance between pursuing these three challenges, in order to get us most quickly towards the required answers.

Anyone studying meteorological systems, or the full Earth system, soon realizes of course how tightly coupled all features are of the climate system. In this review, by trying to collate in to a single paper the main factors affecting UK rainfall, this did though provide a timely reminder of such comprehensive interconnections. Understanding these further suggests a very interesting time lies ahead for climate change research.

Chris Huntingford

Chris Huntingford is a climate modeller based at the Centre for Ecology & Hydrology in Wallingford, Oxfordshire.

Additional information


Full paper reference: Chris Huntingford, Terry Marsh, Adam A. Scaife, Elizabeth J. Kendon, Jamie Hannaford, Alison L. Kay, Mike Lockwood, Christel Prudhomme, Nick S. Reynard, Simon Parry, Jason A. Lowe, James A. Screen, Helen C. Ward, Malcolm Roberts, Peter A. Stott, Vicky A. Bell, Mark Bailey, Alan Jenkins, Tim Legg, Friederike E. L. Otto, Neil Massey, Nathalie Schaller, Julia Slingo and Myles R. Allen (2014) Potential influences on the United Kingdom’s floods of winter 2013/14. Nature Climate Change, doi:10.1038/NCLIMATE2314

Staff page and research interests of Chris Huntingford 

New scientific review investigates potential influences on recent UK winter floods  (CEH News, 27 August 2014)

Monday, 17 March 2014

Winter 2013/14 rainfall records at CEH's Wallingford meteorological station

Katie Muchan, a hydrologist with the Centre for Ecology & Hydrology, looks at the 2013/14 winter rainfall totals recorded at CEH's meteorological station at Wallingford, Oxfordshire.

The news for the last three months has been dominated by record rainfall and prolonged flooding. It was the wettest winter for England & Wales since records began in 1766; and in south-east England, 2013/2014 winter rainfall in both the Thames and Southern regions was more than 230% of the average. The story for the meteorological station based at CEH’s Wallingford site has been no different, with several rainfall records broken during the winter of 2013/2014.

Daily temperature, rainfall and sunshine have been recorded at the meteorological station at the Wallingford site since 1962, in addition to observations of cloud cover, present weather and visibility. The persistence of the storms through the winter of 2013/2014 can be seen in the daily rainfall data. Once the storms started on 15 December 2013, rainfall was recorded on 73 of the 76 remaining days of winter. Furthermore, 66 of these 76 days can be classed as a rain-day, defined as a day when at least 0.2mm rainfall is recorded.

Daily rainfall (mm) during winter 2013/2014 at CEH's Wallingford meteorological station

December started dry, with only 2mm of rainfall recorded in the first two weeks. However, following the first storm on the 15th, rainfall was recorded on all but one day for the rest of the month and the most notable storm, on the 23rd, recorded a daily rainfall total of 35.5mm (36% of the monthly total). This made it the wettest day of the year, and also the wettest day since 22 August 2010. Due to the dry start to the month, December 2013 rainfall was not record-breaking, but it was the fifth wettest in the station’s history, with a monthly total of 97.9mm.

The persistent rain continued into January; only two days recorded no rainfall. As a result, January was the wettest of the winter months; the monthly total of 148.4mm broke the previous January record by 30mm (~25%). January 2014 was also the third wettest of any month at the station in the record from 1962, behind August 1977 and October 1966.

February is normally the driest month of the year with an average monthly total of 37.5mm. However, with rain falling every day in February 2014, yet another record was broken. The monthly total of 112.9mm is 302% (i.e. three times) the average, making it the wettest February in the station’s history (beating the previous record of 103.3mm in 1990).

*Previous records are quoted based on data for January 1962 - November 2013

While the individual monthly totals and records are impressive in themselves, the accumulation of rainfall across the winter season also produces some record-breaking figures. The rainfall total of 246.3mm in December 2013 and January 2014 set a record for the wettest two-month accumulation of any in the station's history, only to be broken by the rainfall in January and February 2014, which totalled 261.3mm. On 13 February, with 15 days of winter remaining, the record for the wettest winter set in 1989/1990 (311.5mm) had already been broken. Rain continued throughout the rest of the month, giving a 2013/2014 winter total of 359.2mm, breaking the previous record by 47.7mm.

Winter rainfall totals (mm) at CEH's Wallingford Meteorological Station


Katie Muchan

Additional information


More information on CEH's Wallingford meteorological station

Hydrological Summaries published during winter 2013/14, including the February 2014 Hydrological Summary

A joint Met Office and CEH report on the winter storms and floods was published in February.