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Facilitating Adaptation in Montane Plants to Changing Precipitation along an Elevation Gradient Symposium Poster
Tracking Climate Change in Hawai’i: Status and Prospects GIS data
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Our project focuses on understanding patterns and causes of recent population declines in the Haleakala silversword that are associated with decreasing precipitation, increasing temperature, and related climate changes in Hawaii’s high-elevation ecosystems. The Haleakala silversword is an ideal taxon with which to assess impacts from climate change. It forms the foundation of a diverse alpine community and likely reflects wider ecological changes; it is already exhibiting patterns of mortality consistent with an upslope shifting distribution; and its high visibility and symbolic status make it unmatched in educational potential. Building on extensive research infrastructure, we propose to collect the demographic...
Local Ecological Knowledge and Climate Change Portal housing all of the data and products produced from this project.
Future Wind and Wave Projections for the NPS and USFWS-managed Islands in the Pacific Ocean GIS Data
Understanding how climate change is affecting Hawaii’s high-elevation ecosystems: an assessment of the long-term viability of Haleakala silverswords and associated biological communities Final Report
Responses of Hawaiian Albatrosses to Environmental Change Data outputs and metadata
Although climate change is predicted to place mountain-top and other narrowly endemic species at severe risk of extinction, the ecological processes involved in such extinctions are still poorly resolved. In addition, much of this biodiversity loss will likely go unobserved, and therefore largely unappreciated. The Haleakalā silversword is restricted to a single volcano summit in Hawai‘i, but is a highly charismatic giant rosette plant that is viewed by 1–2 million visitors annually. We link detailed local climate data to a lengthy demographic record, and combine both with a population-wide assessment of recent plant mortality and recruitment, to show that after decades of strong recovery following successful management,...
A Tool for Understanding Climate Change and Invasive Species Impacts on Watersheds Final Report.
The Weather Research and Forecasting (WRF) model has been configured as a regional climate model for the Hawaii region (HRCM) to assess the uncertainties associated with the pseudo–global warming (PGW) downscaling method using different warming increments from phase 5 of the Coupled Model Intercomparison Project (CMIP5) model experiments. Results from 15-km downscaling experiments using warming increments from 10 individual CMIP5 models for the two warming scenarios representative concentration pathway 4.5 (RCP4.5) and 8.5 (RCP8.5) are compared with experiments using multimodel mean warming increments. The results show that changes in 2-m temperatures, 10-m wind speed, rainfall, water vapor path, and trade wind...
Strong evidence on climate change underscores the need for actions to reduce the impacts of sea-level rise. Global mean sea level may rise 0.18–0.48 m by mid-century1, 2 and 0.5–1.4 m by the end of the century2. Besides marine inundation, it is largely unrecognized that low-lying coastal areas may also be vulnerable to groundwater inundation, which is localized coastal-plain flooding due to a rise of the groundwater table with sea level. Measurements of the coastal groundwater elevation and tidal influence in urban Honolulu, Hawaii, allow estimates of the mean water table, which was used to assess vulnerability to groundwater inundation from sea-level rise. We find that 0.6 m of potential sea-level rise causes substantial...
Final report for the project titled “Field Monitoring and Analysis of Climate Change Across a Wide Range of Ecosystems in Hawai‘i”
Maka’ala Project’s second huaka’i journeyed in July 2018 to Kalepa Gulch, Kalepa Muliwai, Kope Gulch and through private agricultural land above Waiehu Kou III. The day included working together to build a community identity, Asserting Access Rights, Re-Establishing Community Presence and Fortifying our Relationships with our more-than-human community. The youtube link to the video, as of July 2023, can be found below.
Current and year 2100 (SRES A1B) climate envelopes for all native species datasets for “A landscape-based assessment of climate change vulnerability for native Hawaiian plants”.
Categories: Data; Tags: Data, LCC Science Catalog, completed
A Brochure describing the Climate Change and Invasive Species Impacts on Watersheds WDST
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This dataset provides information on the current status and various other habitat and descriptive attributes of the native coastal vegetation for seven of the main Hawaiian Islands (i.e., does not include Ni`ihau).
Identifying opportunities for long-lasting habitat conservation and restoration in Hawaii’s shifting climate GeoTiffs
The purpose of the Kailapa Community Resilience Plan (KCRP) is to create a roadmap for future land use development, promote the community’s ability to thrive, and become a truly Resilient Hawaiian Community. Thriving includes the ability to adapt to and manage environmental threats as the climate changes, and be prepared and aware of potential economic, social, and physical vulnerabilities. The KCRP identifies optimal land uses to support a healthy community that manages all the resources available to it. The Plan identifies a pathway leading to how a resilient Kailapa could look like in the future, and most importantly what steps it would take to get there.


map background search result map search result map Understanding how climate change is affecting Hawaii's high-elevation ecosystems: an assessment of the long-term viability of Haleakala silverswords and associated biological communities Hawaiian Islands Coastal Vegetation Survey 2013-2015 Understanding how climate change is affecting Hawaii's high-elevation ecosystems: an assessment of the long-term viability of Haleakala silverswords and associated biological communities Hawaiian Islands Coastal Vegetation Survey 2013-2015