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Journal article

Seasonal predictability of onset and cessation of the east African rains

Abstract:

Advanced warning of delayed onset or early cessation of the rainy seasons would be extremely valuable information for farmers in east Africa and is a common request from regional stakeholders. Such warnings are beginning to be provided, however forecast skill for these metrics has not been demonstrated. Here the forecast skill of the ECMWF seasonal hindcasts is evaluated for onset and cessation forecasts over east Africa. Correlation of forecast with observed long rains anomalies only above a 95% statistical significance level for a small part of the domain, whilst short rains are significance a large part of the region. The added value of updating the forecast outlook with the extended range 46 day forecast is assessed and this gives a small improvement. For the short rains detection of early onset is better near the coast, and late onset detection is better over northwestern Kenya.


During exceptionally dry years the method to detect onset and cessation fails. Using this as a definition of a failed season, the model shows significant skill at anticipating long rains season failure in the northwest of Kenya, and short rains failure in Somalia and northeast Kenya.


In addition the strength of the correlation between long rains cessation and seasonal total is shown to be particularly weak in observations but too strong in the hindcasts. Predictability of onset and cessation for both seasons appears to arise primarily from the link with seasonal total and it is unclear that the model represents variability in onset and cessation beyond this. This has important implications for operational forecasting: any forecast of season timing which Preprint submitted to Weather and Climate Extremes May 18, 2018 is `inconsistent' with seasonal total (e.g. an early onset but low total rainfall) must be treated with caution.


Finally links with zonal winds are investigated. Late onset is correlated with easterly (westerly) anomalies during the long (short) rains, though the strength and spatial pattern of the relationship is is not well represented in the model. Early cessation is correlated with easterly anomalies in both seasons for most of the region in both observations and hindcasts. However for the long rains the sign of the correlation is reversed along the coast in observations but not in the hindcasts. These dynamical inconsistencies may have a negative impact on forecast skill and have the potential to inform process-based development of climate modelling in the region.

Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1016/j.wace.2018.05.003

Authors

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Institution:
University of Oxford
Division:
MPLS
Department:
Physics
Sub department:
Atmos Ocean & Planet Physics
Role:
Author


Publisher:
Elsevier
Journal:
Weather and Climate Extremes More from this journal
Volume:
21
Pages:
27-35
Publication date:
2018-06-22
Acceptance date:
2018-05-22
DOI:
EISSN:
2212-0947
ISSN:
2212-0947


Pubs id:
pubs:853395
UUID:
uuid:7ce7ba6c-1acd-4e5d-bc01-dba849d71024
Local pid:
pubs:853395
Source identifiers:
853395
Deposit date:
2018-06-11
ARK identifier:

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