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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Variations in sediment properties, Skeffling mudflat, Humber Estuary, UK
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Variations in sediment properties, Skeffling mudflat, Humber Estuary, UK

机译:亨伯河口,英国Skeffling滩涂,沉积物特性的变化

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The generic importance of biogenic mediation of sediment erosion and transport is a matter of debate and a multidisciplinary approach is required to investigate biologically mediated mechanisms of sediment stability. Biogenic influence on sediment behaviour can be inferred from a variety of correlative parameters that act as proxies for biological effects. These include pigment content, organic content and biomass. These biological "indicators" are routinely measured by biologists on a number of differing scales and depth resolutions. Few attempts have been made to examine the importance of an appropriate "match" between the erosion process, the measured physical response and the scale/resolution of the measured biological parameter. This scale dependency was examined along an extensive shore normal transect on the Skeffling mudflat (Humber Estuary, UK), Measurements of physical sediment properties, macrobenthos and selected biogeochemical properties (extracellular polymeric substances) were made. Biogeochemical properties were measured on a "traditional" cm scale and at a depth resolution of 5 mm but also on a microspatial scale, at a 0.2 mm depth resolution. Sediment stability was measured using a cohesive strength meter (CSM). Correlation analysis was used to determine the interactions between variables. A complementary investigation of the sediment micro-fabric (low-temperature scanning electron microscopy) was also conducted. Results demonstrate that the depth resolution of biogeochemical measurements is an influential factor in the interpretation of the biogenic stabilisation of intertidal cohesive sediments. Sediment stability varied with time and with bed feature. Stability increased with time except where influenced by other factors such as rain which markedly reduce surface stability. Critical erosion threshold increased towards the shore whilst suspension index (erosion rate) decreased, and crests were generally more stable than troughs. The study emphasises the temporal and spatial variability of mudflat stability and the importance of biological processes on the erosional behaviour of cohesive sediments. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 33]
机译:沉积物侵蚀和运输的生物成因调解的普遍重要性尚有争议,需要采用多学科方法研究沉积物稳定性的生物介导机制。可以从各种相关参数推断生物对沉积物行为的影响,这些相关参数可以作为生物效应的代理。这些包括颜料含量,有机含量和生物质。这些生物学上的“指标”通常由生物学家在许多不同的尺度和深度分辨率下进行测量。很少有人尝试检查腐蚀过程,测得的物理反应和测得的生物学参数的规模/分辨率之间适当“匹配”的重要性。沿着Skeffling滩涂(英国Humber Estuary)上广泛的海岸正断面检查了这种尺度依赖性,进行了物理沉积物特性,大底栖动物和选定的生物地球化学特性(细胞外聚合物)的测量。生物地球化学性质是在“传统”厘米尺度上和5毫米深度分辨率下进行测量的,但也在微空间尺度上以0.2毫米深度分辨率进行测量。使用内聚强度计(CSM)测量沉积物的稳定性。相关分析被用来确定变量之间的相互作用。还对沉积物微织物(低温扫描电子显微镜)进行了补充研究。结果表明,生物地球化学测量结果的深度分辨率是解释潮间带粘性沉积物生物成因稳定性的一个影响因素。沉积物的稳定性随时间和床特征而变化。稳定性随时间增加,除非受其他因素(例如雨水)的影响,雨水会显着降低表面稳定性。朝向海岸的临界侵蚀阈值增加,而悬浮指数(侵蚀率)降低,并且波峰通常比波谷更稳定。该研究强调泥滩稳定性的时空变化以及生物过程对粘性沉积物侵蚀行为的重要性。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:33]

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