Showing posts with label habitat shifts. Show all posts
Showing posts with label habitat shifts. Show all posts

Thursday, 30 September 2021

Changing sea levels drive the loss of kelp forests on a rocky shore

In this paper recent published in GeoHazards we evaluated the relationship between sea-level change and the severity of impacts in the major habitat-forming seaweed beds that sustain life on rocky shores.

Threshold effects of relative sea-level change in intertidal ecosystems
https://doi.org/10.3390/geohazards204001641


The 7.8 Mw Kaikōura earthquake affected a large section of the South Island’s east coast and led to a major re-assembly of ecological communities and coastal resource use. To understand the drivers of change and recovery in nearshore ecosystems, we quantified the variation in sea-level change caused by tectonic uplift and evaluated relationships with ecological impacts with a view to establishing the minimum threshold and overall extent of the major effects.

For this assessment we needed to quantify the degree of vertical uplift from the earthquake as close as possible to our post-earthquake study sites in the new intertidal zone. Challenges for this included the availability of elevation data within this area since it was previously covered by water at high tide.We used a methodology based on LiDAR data from the closest adjacent areas to landward that also incorporated an assessment of tilt effects that could lead to uneven ground level displacements, and two time periods to address the potential for continued displacement subsequent to the main seismic event. We also included two different sensitivity analyses to validate the approach used, and assessed interactions with substrate types.

Findings
We found that co-seismic uplift accounted for the majority of  the sea-level change at most locations. However, some changes were detected in the period after the initial earthquake that result from the effects of reef weathering and movement of mobile gravels along the coast. 

Vegetation losses were evident in equivalent intertidal zones at all of the uplifted study sites. Nine of ten uplifted sites suffered severe (>80%) loss in habitat-forming algae and they included the lowest uplift values (0.6 m). The results indicate a functional threshold of approximately one-quarter of the tidal range above which major impacts were sustained. This pattern wasn't entirely explained by the previous position of zone boundaries between the main habitat-forming species in relation to their intertidal position, suggesting that other factors  (additional to sea-level changes) were involved.

One of the interesting effects involved previously subtidal algae such as bull kelp (Durvillaea spp.) individuals that were uplifted into the low intertidal zone where they ought to persist - but did not. This suggests that additional post-dearthquake stressors had contributed to the degree of impact, since otherwise we would have expected to find more survivors in our lower intertidal study areas. Similar effects were found for Hormosira in the mid-intertidal zone. Continuing research has been investigating the nature of these factors. These 'double whammy' situations are evidently important to the regeneration of ecosystems and ecosystem services following a major disturbance, and may also affect the severity of observed mortality events.

Friday, 12 February 2021

Recover newsletter issue 6 on Kaikōura coastal recovery

#RECOVER Issue 6 features the ‘new land’ created by the earthquake uplift of the coastline, recreational uses of beaches in Marlborough, and pāua survey work and hatchery projects with our partners in Kaikōura.

Available online here https://hdl.handle.net/10092/101857

Thursday, 26 November 2020

Beach dynamics and recreational access changes

https://bit.ly/MarlboroughBeachReport
Link to report

The report responds to a request from Marlborough District Council (MDC) for information on the coastal environment, with a particular focus on supporting the development of a bylaw to address changes in recreational use patterns that have occurred since the Kaikōura earthquakeWe present a selection of information from our earthquake recovery research that has a focus on understanding the impacts and ongoing processes of change. 

Major impacts of the natural disaster are associated with vertical uplift of the coastal environment, although ongoing erosion and deposition processes are also important. Interactions with human activities are also important because they can exert strong influences on the reassembly of ecosystems which is a critical aspect of outcomes over the longer-term. 

Earthquake uplift caused widespread mortality of many coastal habitats and species (e.g., algal assemblages) that are adapted to a relatively specific set of conditions, often associated with characteristic locations in relation to the tidal range. In uplifted areas the intertidal zone has moved seaward leading to a physical widening of many beaches. This has provided greater opportunity for off-road vehicle access to the coast and has become particularly noticeable at headlands and other natural barriers that were previously impassable at high tide. Off-road vehicles pose threats to sensitive vegetation and wildlife unless appropriately managed. Achieving this is assisted by an understanding of the specific impacts of vehicle use, which in turn requires information on the location of sensitive areas. 

To ensure the best outcomes for earthquake recovery there is an urgent need to assess and respond to the new spatial patterns, and to make plans to avoid conflicts where possible.

Saturday, 6 June 2020

International interest in drone surveys

It was great too see a recent article Barbara Barkhausen in a German magazine focussing on New Zealand's environment and appeal as a tourism destination.

Read the online version here:
http://www.360grad-neuseeland.de/index.php?option=com_content&view=article&id=3072:so-erholt-sich-die-natur-nach-einem-erdbeben&catid=68&Itemid=62

See more aerial images on our Feacebook page here

Friday, 31 May 2019

Quantifying earthquake impacts using drones

A recent Stuff article by Alice Angeloni featured our survey work using drones to map recovery processes on the Kaikōura coast.

We have completed a variety of these high-resolution surveys to investigate diverse aspects of recovery that include habitat shifts and vegetation recovery at our study sites. The sites themselves are characterised by a a variety of environmental conditions and different degrees of uplift resulting from the earthquake event. The high degree of spatiotemporal variation makes the identification of overall impact a challenging task!

https://www.stuff.co.nz/environment/121606479/drone-shots-show-marine-recovery-along-quakestricken-kaikoura-coast

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