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17 results for “sea wall”

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zenodo48/100

Low overtopping discharges over sea walls and breakwaters

<p>The design of seawalls and breakwaters is often required to achieve very low target overtopping discharges when these structures protect vulnerable infrastructure or activities. The balance between economically viable protection and performance requirements is often difficult to achieve without good knowledge on low overtopping. The paucity of data in this space and the higher uncertainty associated with existing methods, increases the challenge. The occurrence of low number of overtopping waves has the consequence that any test results are substantially more affected by the inherent variation of random waves, therefore more uncertain. Within the multi-institute project RECIPE under the HYDRALAB+ project, experimental studies for RECIPE Task 8.2 have generated new data on the response of seawalls, breakwaters and related coastal structures with the aim of improving future model testing. Tests by HRW have explored wave overtopping with contributions of data from UPORTO and LNEC. These physical model test results explore these issues and provide example data. The tests were successful in obtaining low to very low overtopping discharge test data. For low / very low overtopping discharges, these test data present considerable scatter relative to the latest empirical prediction. A number of repetitions were performed for wave conditions resulting in very low overtopping discharges, which illustrated the inherent uncertainty associated with low overtopping.</p>

opencc-by-4.0Mar 2018View details →
zenodo40/100

Fig. 2 in Use Of Intertidal Mangrove And Sea Wall Habitats By Coral Reef Fishes In The Wakatobi Marine Park, Indonesia

Fig. 2. Number of species seen at the two intertidal sites, and the number showing low (&lt;33%), medium (33-67%) and high (&gt;67%) site-fidelity

opencc-by-4.0Dec 2005View details →
zenodo40/100

Fig. 1 in Use Of Intertidal Mangrove And Sea Wall Habitats By Coral Reef Fishes In The Wakatobi Marine Park, Indonesia

Fig. 1. Map of study sites. The arrow points to Hoga Island off the northeast coast of Kaledupa Island. The entire Tukangbesi Archipelago lies within the Wakatobi National Marine Park.

opencc-by-4.0Dec 2005View details →
zenodo32/100

FIGURE 5. Some representative holothurian body wall ossicles. A–E, G–H in A taxonomic guide to the Echinodermata of the South Atlantic Bight, USA: 1. Sea cucumbers (Echinodermata: Holothuroidea)

FIGURE 5. Some representative holothurian body wall ossicles. A–E, G–H, tables viewed from various angles; F, crossed cup; I, perforated rod; J–N, smooth and knobbed buttons; O, cup; P, anchor plate; Q, anchor; R, C-shaped rod; S, wheel. Partly after Hendler et al., 1995.

opennotspecifiedDec 2010View details →
zenodo32/100

FIGURE 6. Labidodemas semperianum Selenka, 1867. MZB Hol.385. Ossicles dorsal body wall, A in Sea cucumbers of the genus Labidodemas (Holothuroidea: Holothuriida: Holothuriidae) from Indonesia, with the description of a new species and a revised key to the genus

FIGURE 6. Labidodemas semperianum Selenka, 1867. MZB Hol.385. Ossicles dorsal body wall, A: tables; B: pseudo-button. Ossicles ventral body wall, C: tables; D: buttons.

opennotspecifiedSep 2024View details →
zenodo32/100

FIGURE 2. Ossicles from, a. dorsal body wall, b. ventral body wall, c. tentacles, d. gonad. Scale 200 in Benthodytes violeta, a new species of a deep-sea holothuroid (Elasipodida: Psychropotidae) from Mar del Plata Canyon (south-western Atlantic Ocean)

FIGURE 2. Ossicles from, a. dorsal body wall, b. ventral body wall, c. tentacles, d. gonad. Scale 200 µm•

opennotspecifiedDec 2014View details →
zenodo28/100

Fig 5 from: Gardiner T, Fargeaud K (2020) Microhabitats of planted sea wall strips used by pollinators and Orthoptera. Journal of Orthoptera Research 29(1): 77-82. https://doi.org/10.3897/jor.29.34452

Fig 5 A teasel (Dipsacus fullonum) flowerhead visited by the tree bumblebee (Bombus hypnorum) in 2019. Photo credit: T. Gardiner.

opencc-by-4.0May 2020View details →
zenodo28/100

Fig 3 from: Gardiner T, Fargeaud K (2020) Microhabitats of planted sea wall strips used by pollinators and Orthoptera. Journal of Orthoptera Research 29(1): 77-82. https://doi.org/10.3897/jor.29.34452

Fig 3 Pollinator strip with a short sward ideal for Orthoptera nymphs being planted with plugs by the second author in April 2018. Photo credit: T. Gardiner.

opencc-by-4.0May 2020View details →
zenodo28/100

Fig 4 from: Gardiner T, Fargeaud K (2020) Microhabitats of planted sea wall strips used by pollinators and Orthoptera. Journal of Orthoptera Research 29(1): 77-82. https://doi.org/10.3897/jor.29.34452

Fig 4 Roesel's bush-cricket (Roeseliana roeselii) nymph on a planted teasel (Dipsacus fullonum) leaf in 2019. Photo credit: T. Gardiner.

opencc-by-4.0May 2020View details →
zenodo28/100

Fig 2 from: Gardiner T, Fargeaud K (2020) Microhabitats of planted sea wall strips used by pollinators and Orthoptera. Journal of Orthoptera Research 29(1): 77-82. https://doi.org/10.3897/jor.29.34452

Fig 2 Principal components for the adult (grasshopper and R. roeselii), sward height/variability, and rabbit grazing data. PC1 represents sward height, PC2 represents R. roeselii adult density.

opencc-by-4.0May 2020View details →
zenodo28/100

Fig 1 from: Gardiner T, Fargeaud K (2020) Microhabitats of planted sea wall strips used by pollinators and Orthoptera. Journal of Orthoptera Research 29(1): 77-82. https://doi.org/10.3897/jor.29.34452

Fig 1 Principal components for the nymph (grasshopper and R. roeselii), sward height/variability, and rabbit grazing data. PC1 represents sward height, PC2 represents R. roeselii nymph density.

opencc-by-4.0May 2020View details →
zenodo28/100

Figure 2 from: Stienen EWM, Desmet P, Aelterman B, Courtens W, Feys S, Vanermen N, Verstraete H, Van de walle M, Deneudt K, Hernandez F, Houthoofdt R, Vanhoorne B, Bouten W, Buijs RJ, Kavelaars MM, Müller W, Herman D, Matheve H, Sotillo A, Lens L (2016) GPS tracking data of Lesser Black-backed Gulls and Herring Gulls breeding at the southern North Sea coast. ZooKeys 555: 115-124. https://doi.org/10.3897/zookeys.555.6173

Figure 2 - Left: map of western Europe and northwest Africa, showing the full extent of the gull tracking data, including two migration/wintering seasons. Right: map of the southern North Sea coast, showing mainly breeding season data. Each point represents a recorded occurrence, LBBG are indicated in orange, HG in blue. Overlapping points are brighter in colour. Maps created with CartoDB, basemap based on OpenStreetMap data. https://inbo.cartodb.com/u/lifewatch/viz/da04f120-ea70-11e4-a3f2-0e853d047bba/public_map

opencc-by-4.0Jan 2016View details →
zenodo28/100

Figure 1 from: Stienen EWM, Desmet P, Aelterman B, Courtens W, Feys S, Vanermen N, Verstraete H, Van de walle M, Deneudt K, Hernandez F, Houthoofdt R, Vanhoorne B, Bouten W, Buijs RJ, Kavelaars MM, Müller W, Herman D, Matheve H, Sotillo A, Lens L (2016) GPS tracking data of Lesser Black-backed Gulls and Herring Gulls breeding at the southern North Sea coast. ZooKeys 555: 115-124. https://doi.org/10.3897/zookeys.555.6173

Figure 1 - One of the tracked Lesser Black-backed Gulls ("Hans", ring code: L906682), photographed near its nest in Zeebrugge on May 29, 2013 shortly after he was equipped with a tracker (device info serial: 861). Photo by Misjel Decleer, VLIZ photo gallery.

opencc-by-4.0Jan 2016View details →
zenodo28/100

Figure 3 from: Stienen EWM, Desmet P, Aelterman B, Courtens W, Feys S, Vanermen N, Verstraete H, Van de walle M, Deneudt K, Hernandez F, Houthoofdt R, Vanhoorne B, Bouten W, Buijs RJ, Kavelaars MM, Müller W, Herman D, Matheve H, Sotillo A, Lens L (2016) GPS tracking data of Lesser Black-backed Gulls and Herring Gulls breeding at the southern North Sea coast. ZooKeys 555: 115-124. https://doi.org/10.3897/zookeys.555.6173

Figure 3 - Researchers equipping a Herring Gull with a UvA-BiTS GPS tracker on the roof of the Vismijn in Ostend on May 24, 2013. Photo by Misjel Decleer, VLIZ photo gallery.

opencc-by-4.0Jan 2016View details →
geo24/100

Transcriptomic analysis of the body wall of farmed sea cucumber Isostichopus badionotus specimens

GEO Series GSE157183. Isostichopus badionotus. 6 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenSep 2020View details →
zenodo24/100

Figure 4 from: Stienen EWM, Desmet P, Aelterman B, Courtens W, Feys S, Vanermen N, Verstraete H, Van de walle M, Deneudt K, Hernandez F, Houthoofdt R, Vanhoorne B, Bouten W, Buijs RJ, Kavelaars MM, Müller W, Herman D, Matheve H, Sotillo A, Lens L (2016) GPS tracking data of Lesser Black-backed Gulls and Herring Gulls breeding at the southern North Sea coast. ZooKeys 555: 115-124. https://doi.org/10.3897/zookeys.555.6173

Figure 4 - Number of birds grouped by number of tracking days and tracking start year.

opencc-by-4.0Jan 2016View details →
geo16/100

Differential gene expression in the body wall of the sea cucumber (Apostichopus japonicus) under strong lighting and dark conditions

GEO Series GSE87803. Apostichopus japonicus. 3 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenNov 2016View details →

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Allen Brain Atlas

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DANDI Archive for NWB datasets

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Last verified 2026-04-30Open record

International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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Last verified 2026-04-29Open record

OpenNeuro

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Last verified 2026-04-29Open record