How will increases in rainfall intensity affect semiarid ecosystems?

Publication date

2014

Authors

Siteur, K.ISNI 0000000395831095
Eppinga, M.B.ISNI 000000039267002X
Karssenberg, D.J.ORCID 0000-0002-6475-363XISNI 0000000114829248
Baudena, M.ORCID 0000-0002-6873-6466ISNI 0000000419499999
Bierkens, M. F. P.ORCID 0000-0002-7411-6562ISNI 0000000109834798
Rietkerk, MaxORCID 0000-0002-2698-3848ISNI 0000000047385244

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Article
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Abstract

Model studies suggest that semiarid ecosystems with patterned vegetation can respond in a nonlinear way to climate change. This means that gradual changes can result in a rapid transition to a desertified state. Previous model studies focused on the response of patterned semiarid ecosystems to changes in mean annual rainfall. The intensity of rain events, however, is projected to change as well in the coming decades. In this paper, we study the effect of changes in rainfall intensity on the functioning of patterned semiarid ecosystems with a spatially explicit model that captures rainwater partitioning and runoff-runon processes with simple event-based process descriptions. Analytical and numerical analyses of the model revealed that rainfall intensity is a key parameter in explaining patterning of vegetation in semiarid ecosystems as low mean rainfall intensities do not allow for vegetation patterning to occur. Surprisingly, we found that, for a constant annual rainfall rate, both an increase and a decrease in mean rainfall intensity can trigger desertification. An increase negatively affects productivity as a greater fraction of the rainwater is lost as runoff. This can result in a shift to a bare desert state only if the mean rainfall intensity exceeds the infiltration capacity of bare soil. On the other hand, a decrease in mean rainfall intensity leads to an increased fraction of rainwater infiltrating in bare soils, remaining unavailable to plants. Our findings suggest that considering rainfall intensity as a variable may help in assessing the proximity to regime shifts in patterned semiarid ecosystems and that monitoring losses of resource through runoff and bare soil infiltration could be used to determine ecosystem resilience. Key Points Rainfall intensity controls patterning and the resilience of arid ecosystems Both an increase and decrease in rainfall intensity can trigger desertification In line with observations, three types of rain events were identified in our model

Keywords

Taverne, SDG 13 - Climate Action

Citation

Siteur, K, Eppinga, M B, Karssenberg, D, Baudena, M, Bierkens, M F P & Rietkerk, M 2014, 'How will increases in rainfall intensity affect semiarid ecosystems?', Water Resources Research, vol. 50, no. 7, pp. 5980-6001. https://doi.org/10.1002/2013WR014955