Sociohydrology: Scientific Challenges in Addressing the Sustainable Development Goals
Социогидрология: научные проблемы в достижении Целей устойчивого развития
2019-07-09
SCID: 54.1/vbtnfz73
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Sustainable Development Goals (SDGs)emergent phenomena hypothesis testinghuman-water system feedbackssocial heterogeneity and power relationssociohydrology
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Abstract (AI)
The Sustainable Development Goals (SDGs) of the United Nations Agenda 2030 represent an ambitious blueprint to reduce inequalities globally and achieve a sustainable future for all mankind. Meeting the SDGs for water requires an integrated approach to managing and allocating water resources, by involving all actors and stakeholders, and considering how water resources link different sectors of society. To date, water management practice is dominated by technocratic, scenario-based approaches that may work well in the short term but can result in unintended consequences in the long term due to limited accounting of dynamic feedbacks between the natural, technical, and social dimensions of human-water systems. The discipline of sociohydrology has an important role to play in informing policy by developing a generalizable understanding of phenomena that arise from interactions between water and human systems. To explain these phenomena, sociohydrology must address several scientific challenges to strengthen the field and broaden its scope. These include engagement with social scientists to accommodate social heterogeneity, power relations, trust, cultural beliefs, and cognitive biases, which strongly influence the way in which people alter, and adapt to, changing hydrological regimes. It also requires development of new methods to formulate and test alternative hypotheses for the explanation of emergent phenomena generated by feedbacks between water and society. Advancing sociohydrology in these ways therefore represents a major contribution toward meeting the targets set by the SDGs, the societal grand challenge of our time.
Key Findings
1
Advancing sociohydrology requires engaging social scientists to incorporate social heterogeneity, power relations, trust, cultural beliefs, and cognitive biases.
2
Current technocratic, scenario-based water management can produce unintended long-term consequences due to neglecting dynamic feedbacks among natural, technical, and social dimensions.
3
Meeting SDG water targets requires integrated water resource management that involves all actors and accounts for cross-sectoral links between water and society.
4
Progress needs new methods to formulate and test alternative hypotheses explaining emergent phenomena from feedbacks between water and society, strengthening contributions toward SDGs.
5
Sociohydrology can inform policy by developing generalizable explanations of phenomena emerging from human-water interactions.
Research Object
Human–water systems (interacting social, technical, and hydrological components)
Research Subject
Emergent phenomena and dynamic feedbacks arising from interactions between water and human systems, including social heterogeneity, power relations, trust, cultural beliefs, cognitive biases, and methods to formulate and test hypotheses explaining these phenomena to inform SDG‑relevant water management
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2019-07-09
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