Published May 1, 2019 | Version v1
Journal article

Hierarchical sensitivity analysis for simulating barrier island geomorphologic responses to future storms and sea-level rise

  • 1. Jinan University, Institute of Groundwater and Earth Sciences (China)
  • 2. Florida State University, Department of Scientific Computing and Geophysical Fluid Dynamics Institute (United States)
  • 3. Wyndham Consultants, LLC (United States)
  • 4. Pacific Northwest National Laboratory (United States)

Description

This paper presents a new application of an advanced hierarchical sensitivity analysis of a new climate model of barrier island geomorphological evolution. The implemented sensitivity analysis in this study integrates a hierarchical uncertainty framework with a variance-based global sensitivity analysis to decompose the different model input uncertainties. The analysis can provide quantitative and accurate measurements for the relative importance of uncertain model input factors while considering their dependence relationships. The climate model used in this research was the barrier island profile (BIP) model, which is a new computer code developed to simulate barrier island morphological evolution over periods ranging from years to decades under the impacts of accelerated future sea-level rise and long-term changes in the storm climate. In the application of the model, the BIP model was used to evaluate the responses of a series of barrier island cross-sections derived for Santa Rosa Island, Florida, to random storm events and five potential accelerated rates of sea-level rise projected over the next century. The uncertain model input factors thus include the scenario uncertainty caused by alternative future sea-level rise scenarios and the parametric uncertainties of random storm parameters and dune characteristics. The study results reveal that the occurrence of storms is the most important factor for the evolution of sand dunes on the barrier island and the impact of sea-level rise is essential to the morphological change of the island backshore environment. The analysis can provide helpful insights for coastal management and planning. This hierarchical sensitivity analysis is mathematically general and rigorous and can be applied to a wide range of climate models.

Additional details

Identifiers

Publishing Information

Journal Title
Theoretical and Applied Climatology
Journal Volume
136
Journal Issue
3-4
Journal Page Range
p. 1495-1511
ISSN
0177-798X
CODEN
TACLEK

INIS

Country of Publication
Austria
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
52011663
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
CLIMATE MODELS; CLIMATES; COMPUTER CODES; CROSS SECTIONS; DIFFUSION BARRIERS; EVOLUTION; FLORIDA; ISLANDS; MORPHOLOGICAL CHANGES; RANDOMNESS; SAND; SEA LEVEL; SENSITIVITY ANALYSIS; STORMS
Descriptors DEC
DEVELOPED COUNTRIES; LEVELS; MATHEMATICAL MODELS; NORTH AMERICA; USA

Optional Information

Copyright
Copyright (c) 2019 Springer-Verlag GmbH Austria, part of Springer Nature