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Drought in a human-modified world: Reframing drought definitions, understanding, and analysis approaches

Drought in a human-modified world: Reframing drought definitions, understanding, and analysis approaches
Drought in a human-modified world: Reframing drought definitions, understanding, and analysis approaches

In the current human-modified world, or Anthropocene, the state of water stores and fluxes has become dependent on human as well as natural processes. Water deficits (or droughts) are the result of a complex interaction between meteorological anomalies, land surface processes, and human inflows, outflows, and storage changes. Our current inability to adequately analyse and manage drought in many places points to gaps in our understanding and to inadequate data and tools. The Anthropocene requires a new framework for drought definitions and research. Drought definitions need to be revisited to explicitly include human processes driving and modifying soil moisture drought and hydrological drought development. We give recommendations for robust drought definitions to clarify timescales of drought and prevent confusion with related terms such as water scarcity and overexploitation. Additionally, our understanding and analysis of drought need to move from single driver to multiple drivers and from uni-directional to multi-directional. We identify research gaps and propose analysis approaches on (1) drivers, (2) modifiers, (3) impacts, (4) feedbacks, and (5) changing the baseline of drought in the Anthropocene. The most pressing research questions are related to the attribution of drought to its causes, to linking drought impacts to drought characteristics, and to societal adaptation and responses to drought. Example questions include i) What are the dominant drivers of drought in different parts of the world? (ii) How do human modifications of drought enhance or alleviate drought severity? (iii) How do impacts of drought depend on the physical characteristics of drought vs. the vulnerability of people or the environment? (iv) To what extent are physical and human drought processes coupled, and can feedback loops be identified and altered to lessen or mitigate drought? (v) How should we adapt our drought analysis to accommodate changes in the normal situation (i.e. what are considered normal or reference conditions) over time? Answering these questions requires exploration of qualitative and quantitative data as well as mixed modelling approaches. The challenges related to drought research and management in the Anthropocene are not unique to drought, but do require urgent attention. We give recommendations drawn from the fields of flood research, ecology, water management, and water resources studies. The framework presented here provides a holistic view on drought in the Anthropocene, which will help improve management strategies for mitigating the severity and reducing the impacts of droughts in future.

1027-5606
3631-3650
Van Loon, Anne F.
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Stahl, Kerstin
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Di Baldassarre, Giuliano
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Clark, Julian
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Rangecroft, Sally
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Wanders, Niko
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Gleeson, Tom
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Van Dijk, Albert I.J.M.
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Tallaksen, Lena M.
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Hannaford, Jamie
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Uijlenhoet, Remko
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Teuling, Adriaan J.
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Hannah, David M.
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Sheffield, Justin
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Svoboda, Mark
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Verbeiren, Boud
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Wagener, Thorsten
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Van Lanen, Henny A.J.
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Van Loon, Anne F.
a107b548-28f1-406c-8ca7-e6e0494f9a36
Stahl, Kerstin
de687940-ec4b-47a1-b48f-930da7488cc3
Di Baldassarre, Giuliano
684ecc68-81ac-41b0-98d5-9b4b288e0b1d
Clark, Julian
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Rangecroft, Sally
deb86e42-f07f-41a0-9899-2d49ea4cdd02
Wanders, Niko
1a8ae307-52e8-405c-8549-ed76ffec80bd
Gleeson, Tom
f398939a-8a8c-40ff-898d-057eb52333db
Van Dijk, Albert I.J.M.
31892b83-b661-4668-8208-8a2bed27743c
Tallaksen, Lena M.
d3b4863d-a0e5-4ad4-804c-750c6eb33daf
Hannaford, Jamie
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Uijlenhoet, Remko
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Teuling, Adriaan J.
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Hannah, David M.
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Sheffield, Justin
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Svoboda, Mark
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Verbeiren, Boud
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Wagener, Thorsten
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Van Lanen, Henny A.J.
b6b14260-5c51-41e4-9361-0a6e3d0f46ef

Van Loon, Anne F., Stahl, Kerstin, Di Baldassarre, Giuliano, Clark, Julian, Rangecroft, Sally, Wanders, Niko, Gleeson, Tom, Van Dijk, Albert I.J.M., Tallaksen, Lena M., Hannaford, Jamie, Uijlenhoet, Remko, Teuling, Adriaan J., Hannah, David M., Sheffield, Justin, Svoboda, Mark, Verbeiren, Boud, Wagener, Thorsten and Van Lanen, Henny A.J. (2016) Drought in a human-modified world: Reframing drought definitions, understanding, and analysis approaches. Hydrology and Earth System Sciences, 20 (9), 3631-3650. (doi:10.5194/hess-20-3631-2016).

Record type: Article

Abstract

In the current human-modified world, or Anthropocene, the state of water stores and fluxes has become dependent on human as well as natural processes. Water deficits (or droughts) are the result of a complex interaction between meteorological anomalies, land surface processes, and human inflows, outflows, and storage changes. Our current inability to adequately analyse and manage drought in many places points to gaps in our understanding and to inadequate data and tools. The Anthropocene requires a new framework for drought definitions and research. Drought definitions need to be revisited to explicitly include human processes driving and modifying soil moisture drought and hydrological drought development. We give recommendations for robust drought definitions to clarify timescales of drought and prevent confusion with related terms such as water scarcity and overexploitation. Additionally, our understanding and analysis of drought need to move from single driver to multiple drivers and from uni-directional to multi-directional. We identify research gaps and propose analysis approaches on (1) drivers, (2) modifiers, (3) impacts, (4) feedbacks, and (5) changing the baseline of drought in the Anthropocene. The most pressing research questions are related to the attribution of drought to its causes, to linking drought impacts to drought characteristics, and to societal adaptation and responses to drought. Example questions include i) What are the dominant drivers of drought in different parts of the world? (ii) How do human modifications of drought enhance or alleviate drought severity? (iii) How do impacts of drought depend on the physical characteristics of drought vs. the vulnerability of people or the environment? (iv) To what extent are physical and human drought processes coupled, and can feedback loops be identified and altered to lessen or mitigate drought? (v) How should we adapt our drought analysis to accommodate changes in the normal situation (i.e. what are considered normal or reference conditions) over time? Answering these questions requires exploration of qualitative and quantitative data as well as mixed modelling approaches. The challenges related to drought research and management in the Anthropocene are not unique to drought, but do require urgent attention. We give recommendations drawn from the fields of flood research, ecology, water management, and water resources studies. The framework presented here provides a holistic view on drought in the Anthropocene, which will help improve management strategies for mitigating the severity and reducing the impacts of droughts in future.

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Published date: 8 September 2016

Identifiers

Local EPrints ID: 477748
URI: http://eprints.soton.ac.uk/id/eprint/477748
ISSN: 1027-5606
PURE UUID: 0c79c5be-1e36-4c89-90e8-0898d11f9d04
ORCID for Justin Sheffield: ORCID iD orcid.org/0000-0003-2400-0630

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Date deposited: 13 Jun 2023 17:32
Last modified: 17 Mar 2024 03:40

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Contributors

Author: Anne F. Van Loon
Author: Kerstin Stahl
Author: Giuliano Di Baldassarre
Author: Julian Clark
Author: Sally Rangecroft
Author: Niko Wanders
Author: Tom Gleeson
Author: Albert I.J.M. Van Dijk
Author: Lena M. Tallaksen
Author: Jamie Hannaford
Author: Remko Uijlenhoet
Author: Adriaan J. Teuling
Author: David M. Hannah
Author: Mark Svoboda
Author: Boud Verbeiren
Author: Thorsten Wagener
Author: Henny A.J. Van Lanen

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