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Coastal Management 2019最新文献

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Managing Ecological, Community and Bathing Water Quality Aspects in Design and Construction: Runswick Bay Coastal Protection Scheme, UK 在设计和施工中管理生态、社区和洗浴水质:伦斯威克湾海岸保护计划,英国
Pub Date : 2020-06-03 DOI: 10.1680/CM.65147.447
D. Latham, R. Siddle, M. Donoghue, Anissia Halwyn, Alice E. Hall, S. Hull, Nick Hardiman
The Runswick Bay Coastal Protection Scheme consisted of repairs and installation of concrete toe protection to the existing seawall and the placement of approximately 9,500 tonnes of imported rock armour to form a new revetment totaling 250m length. The historic concrete seawall had reached the end of its serviceable life with a predicted failure within the next ten years. The newly constructed scheme offers an enhanced standard of protection to 96 residential and 17 non-residential properties, including 6 listed buildings and infrastructure such as access roads and utilities, from coastal erosion for the next 100 years. Tourism, the foremost revenue stream of the community has also been safeguarded by the works. The scheme was achieved through collaboration across the project team with a focus on long term coastal protection alongside consideration for minimising the impact to the site given its sensitive status, i.e. designated for its ecological, landscape, heritage and bathing water quality. An emphasis during both the design and construction work was given to reducing disruption to the local community and visitors along with seeking opportunities for ecological enhancement. The project involved the local community as much as possible to help steer the project’s design and construction. The programme for the construction phase was developed to minimise disruption to the area during peak visitor periods. Construction works commenced in February 2018 and the programme included a two-week suspension of activity over the school Easter holiday period, with completion scheduled for the end of June 2018, prior to the start of the school Summer holidays. During construction, water quality was monitored through regular sampling and laboratory testing to ensure the works did not adversely affect bathing water quality. A sampling regime was developed which incorporated eleven sampling points across the wider bay to determine potential pollution sources. These data augmented the existing information collected by the Environment Agency and provided useful verification for future intertidal rock off-loading and stockpiling operations. To mitigate environmental impact from the works, workforce and machinery movements were limited to previously confirmed access routes and working areas to avoid ecologically sensitive locations. Existing foreshore boulders heavily colonised with marine flora were carefully set aside to allow construction. These were then placed against the toe of the new rock structure as ‘seed rocks’ to encourage rapid colonisation of the new material. The engineered rock structure was modified to provide improved textural complexity and water retention through the creation of artificial rockpools and surface scoring. At this time, the scheme represents the largest application of this type of ecological enhancement in the UK and represents a combination of leading-edge coastal engineering practice and innovation in ecological design. The sch
朗斯威克湾海岸保护计划包括维修和安装混凝土护趾,以保护现有的海堤,并放置约9,500吨进口岩甲,形成一个总长250米的新护岸。这座历史悠久的混凝土海堤已经到了使用寿命的尽头,预计在未来十年内将会失效。新建成的计划为96个住宅和17个非住宅物业提供了更高的保护标准,包括6个列入名单的建筑物和基础设施,如通道和公用设施,在未来100年内免受海岸侵蚀。旅游业是社区最重要的收入来源,这些工程也得到了保障。该方案是通过整个项目团队的合作实现的,重点是长期的海岸保护,同时考虑到其敏感状态,即指定其生态,景观,遗产和洗浴水质,最大限度地减少对场地的影响。在设计和施工工作中,重点是减少对当地社区和游客的干扰,并寻求改善生态的机会。该项目尽可能地让当地社区参与进来,帮助指导项目的设计和施工。建设阶段的计划是为了尽量减少在游客高峰期对该地区的干扰。建筑工程于2018年2月开始,计划包括在学校复活节假期期间暂停两周的活动,计划于2018年6月底完成,在学校暑假开始之前。在施工期间,我们定期抽取样本及进行化验,以监察水质,确保工程不会对洗浴用水造成不良影响。我们制定了一套抽样制度,其中包括横跨较宽海湾的11个抽样点,以确定潜在的污染源。这些数据增强了环境署收集的现有信息,并为未来的潮间带岩石卸载和储存操作提供了有用的验证。为了减轻工程对环境的影响,工人和机器的移动被限制在先前确定的通道和工作区域内,以避开生态敏感的地点。现有的前海岸巨石被大量的海洋植物群小心地放在一边,以便施工。然后将它们作为“种子岩”放置在新岩石结构的脚趾上,以促进新材料的快速殖民。对工程岩石结构进行了修改,通过创建人工岩池和地面划痕,提高了岩石结构的复杂性和保水能力。目前,该方案代表了这种类型的生态增强在英国的最大应用,代表了前沿的海岸工程实践和创新的生态设计的结合。计划的设计将通过公共和私营部门以及学术界之间的联系进行监督。
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引用次数: 0
The Impact that Geomorphological Development of Managed Realignment Sites has on Fish Habitat 管理调整地点的地貌发展对鱼类生境的影响
Pub Date : 2020-01-03 DOI: 10.1680/CM.65147.375
H. M. Burgess, K. Nelson, S. Colclough, J. Dale
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引用次数: 3
Management of coastal erosion on the Aquitaine coast - strategic approaches and governance implemented by GIP Littoral 阿基坦海岸的海岸侵蚀管理——GIP实施的战略方法和治理
Pub Date : 2020-01-01 DOI: 10.1680/cm.65147.407
C. André
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引用次数: 0
Leveraging Coastal Management for Improved Resilience, Environmental Enhancement, and Equitable Access to Lake Erie in Euclid, Ohio 在俄亥俄州欧几里得,利用海岸管理提高恢复力、环境改善和公平进入伊利湖
Pub Date : 2020-01-01 DOI: 10.1680/cm.65147.157
M. Boshek, Jason Stangland
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引用次数: 0
Broader Outcomes & Place Shaping – Delivering More Through Effective Partnerships 更广泛的成果和位置塑造-通过有效的合作伙伴关系提供更多
Pub Date : 2020-01-01 DOI: 10.1680/cm.65147.419
Mark Stratton
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引用次数: 0
Nine years after storm Xynthia, what has changed? 辛西娅风暴过去九年后,发生了什么变化?
Pub Date : 2020-01-01 DOI: 10.1680/cm.65147.633
R. Slomp, Samy Ouahsine, Fabrice Enon
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引用次数: 0
Monitoring Coastal Change from space; what end users need and what is feasible 从空间监测海岸变化;什么是最终用户需要的,什么是可行的
Pub Date : 2020-01-01 DOI: 10.1680/cm.65147.213
A. Payo, M. Hennen, Jara Martínez, X. Monteys, T. Jaegler, F. Martin-Lauzer, Craig Jacobs, M. Ellis
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引用次数: 2
The UK’s First Sandscaping Project (Bacton, Norfolk) from Idea to Reality 英国第一个沙景项目(巴顿,诺福克)从想法到现实
Pub Date : 2020-01-01 DOI: 10.1680/cm.65147.333
Mark Johnson, R. Goodliffe, Gökhan Doygun, J. Flikweert
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引用次数: 1
Erosion Due To Sea Level Rise: A Glamorgan Case study 海平面上升造成的侵蚀:格拉摩根案例研究
Pub Date : 2020-01-01 DOI: 10.1680/cm.65147.565
M. Walkden, Alice Johnson, S. Longfield
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引用次数: 2
Comparing Coastal Management Approaches in Distinct Locations: Case Studies from England (UK), Auckland (New Zealand), and Diego Garcia (BIOT) 比较不同地区的海岸管理方法:来自英格兰(英国)、奥克兰(新西兰)和迪戈加西亚(BIOT)的案例研究
Pub Date : 2020-01-01 DOI: 10.1680/cm.65147.003
G. Millar, G. Munford, H. Jay
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引用次数: 0
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Coastal Management 2019
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