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131.
Abstract. The predator-prey interaction between two sea star species of the genus Astropecten known to be competitors was investigated at Costa Colostrai, Sardinia, Italy by means of SCUBA-Diving. It was estimated that predation of A. aranciacus would eliminate about 1 % of the prey population of A. bispinosus daily. Because densities of A. bispinosus were observed to be unaltered during the summer months, a considerable immigration of A. bispinosus into the area has to be postulated. A. bispinosus represents 40% of the dry organic matter consumed by A. aranciacus , and is one of the most important food items of this species.
A. aranciacus is not more efficient in preying upon A. bispinosus than in preying upon other food items; but efficiency is greater upon buried sea stars than upon walking ones.
Consequences for stability of the local ecosystem are discussed.  相似文献   
132.
The horizontal components from fourteen Ocean Bottom Seismometers deployed along four profiles focused along the western margin of the Jan Mayen microcontinent, North Atlantic, have been modelled with regard to S-waves, based on P-wave models obtained earlier. The seismic models have furthermore been constrained by 2D gravity modelling. High V p/V s-ratios (2.3–7.9) within the Cenozoic sedimentary section are attributed to significant porosities, whereas V p/V s-ratios in the order of 1.9–2.2 for the Mesozoic and Paleozoic sedimentary rocks indicate shale-dominated lithology throughout the area. The eastern side of the Jan Mayen Ridge is interpreted as a passive, volcanic margin, based on relatively high crustal V p/V s-ratios (1.9), whereas lower V p/V s-ratios (1.75–1.8) suggest the presence of intermediate composition crust and non-volcanic margin on the western side of the ridge. In the westernmost part of the Jan Mayen Basin, slightly increased upper mantle V p/V s-ratios may indicate some degree of serpentization of upper mantle peridotites.  相似文献   
133.
This study presents the modelling of 2-D and 3-D wide-angle seismic data acquired on the complex, volcanic passive margin of the Vøring Plateau, off Norway. Three wide-angle seismic profiles were shot and recorded simultaneously by 21 Ocean Bottom Seismometers, yielding a comprehensive 3-D data set, in addition to the three in-line profiles. Coincident multi-channel seismic profiles are used to better constrain the modelling, but the Mesozoic and deeper structures are poorly imaged due to the presence of flood basalts and sills. Velocity modelling reveals an unexpectedly large 30 km basement high hidden below the flood basalt. When interpreted as a 2-D structure, this basement high produces a modelled gravity anomaly in disagreement with the observed gravity. However, both the gravity and the seismic data suggest that the structure varies in all three directions. The modelling of the entire 3-D set of travel times leads to a coherent velocity structure that confirms the basement high; it also shows that the abrupt transition to the slower Cretaceous basin coincides in position and orientation with the fault system forming the Rån Ridge. The positive gravity anomaly over the Rån Ridge originates from the focussed and coincident elevation of the high velocity lower crust and pre-Cretaceous basement. Although the Moho is not constrained by the seismic data, the gravity modelled from the 3-D velocity model shows a better fit along the profiles. This study illustrates the interest of a 3-D acquisition of wide-angle seismic over complex structures and the benefit of the subsequent integrated interpretation of the seismic and gravity data.  相似文献   
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136.
There has been a long-standing debate concerning how dangerous seismic surveys are with respect to marine life. Marine seismic work today is dominated by airgun technology, where high energy is generated by a release of compressed air into the water. The objective of the “Time coded impulse seismic technique” project is to examine whether a new low energy acoustic source can be used for seismic purposes. If the method turns out to be successful, the low output energy and continuous operation will make the source suitable in environmental sensitive areas. The Low level Acoustic Combustion Source (LACS) is a petrol driven pulsed underwater acoustic source. It operates at a few meters depth, and each shot can be digitally controlled from the surface by a computer located in the mother vessel. A presentation of the recorded LACS signal characteristics, the modulation, the Pseudo Noise coding/decoding principles and field test results, is given. The importance of using an optimized code with fine resolution and of using the near field recording as a correlator sequence is demonstrated. Clear correlation peaks could then be seen from the bottom and sub bottom reflectors.  相似文献   
137.
The erosion potential over bedforms in a tidal flat of the East Frisian Wadden Sea was studied by conducting erosion and physical and biological sediment property measurements on the crests and troughs of bedforms. Five stations along a cross-shore transect of 1.5 km length from immediately below the salt marsh to the mid tide-level of the tidal flat were visited during two field campaigns in June and September 2002. Measurements of sediment erodibility were made on both crests and troughs using an EROMES erosion device and quantified in terms of critical erosion shear stress and erosion rate. Surface sediment scrape samples (upper 1 mm layer) were taken from crests and troughs to determine various physical and biological properties of the sediment. The results show that crests are generally more stable (i.e. higher critical erosion shear stresses and lower erosion rates) than troughs. In general, crests contained more chlorophyll a, colloidal carbohydrate, and EPS (extracellular polymeric substance) than troughs. Median grain-size, water content and wet bulk density of the crests showed no statistically significant difference from those of the troughs with the exception at the most landward station immediately below the salt marsh margin, where crests had significantly lower water content and higher wet bulk density than troughs.Two different processes were identified for the difference in erodibility between crests and troughs: (1) At stations with emersion times less than 6 h, the higher benthic diatom biomass (measured as chlorophyll a concentration) on the crests increases the amount of EPS, which is likely to stabilize the sediment surface of these features; (2) in a saltmarsh transition area (most landward station), physical processes such as surface drying and compaction seem to enhance in a synergistic way the sediment stability on the crests.  相似文献   
138.
We have obtained precise estimates of the position of Ocean Bottom Seismometers (OBS) on the sea bottom. Such estimates are usually uncertain due to their free falling deployment. This uncertainty is small enough, or is correctable, with OBS spacing of more than 10 km usually employed in crustal studies. But, for example, if the spacing is only 200 m for OBS reflection studies, estimates of the position with an accuracy of the order of 10 m or more is required.The determination was carried out with the slant range data, ship position data and a 1D acoustic velocity structure calculated from Conductivity–Temperature–Depth (CTD) data, if they are available. The slant range data were obtained by an acoustic transponder system designed for the sinker releasing of the OBS or travel time data of direct water wave arrivals by airgun shooting. The ship position data was obtained by a single GPS or DGPS. The method of calculation was similar to those used for earthquake hypocenter determination.The results indicate that the accuracy of determined OBS positions is enough for present OBS experiments, which becomes order of 1 m by using the DGPS and of less than 10 m by using the single GPS, if we measure the distance from several positions at the sea surface by using a transponder system which is not designed for the precise ranging. The geometry of calling positions is most important to determine the OBS position, even if we use the data with larger error, such as the direct water wave arrival data. The 1D acoustic velocity structure should be required for the correct depth of the OBS. Although it is rare that we use a CTD, even an empirical velocity structure works well.  相似文献   
139.
There are two principal threats to sustainable coastal fisheries. The concern which has been evident in most parts of the world for many years is the existence of open access to fisheries which has led to over-capitalization, over-fishing of the resource and, often, conflict. Increasingly in recent years, however, a second threat has become apparent. This is the loss of fish habitat and deterioration of water quality brought about by environmental changes generated in other sectors. Integrated coastal fisheries management addresses these issues through a strategy in which the removal of open access plays the key role, supported by elements such as creation of awareness, local participation in management, training and research, and improved sectoral coordination and planning. It is noted that, very often, the amelioration of the second of the two principal threats may be dependent on the fishery sector resolving the first.  相似文献   
140.
The Baltic Shield of northern Europe is transsected by approximately N-S and NW-SE striking Proterozoic fault and fracture zones that were remobilized during the Late Precambrian opening of the Iapetus ocean and the SE-directed thrusting of the Caledonian nappes in Mid-Paleozoic time. Remobilizations of these older structures account for a distinct subsidence history and sedimentological evolution over each fault-bounded basement segment during opening of the Iapetus and for a distinct metamorphic and structural development found within each block during overthrusting of the Caledonian nappes and the exhumation of the orogen. The two fault sets define basement blocks with rhombus-like plan sections which had individual subsidence histories during Iapetus rifting as is expressed by their Late Precambrian (Riphean and Vendian) to Silurian sedimentary cover of contrasting thickness and facies. This contrasting subsidence history of the various basement blocks may have contributed to differences in thrusting level, thrust excision (nappe size), and tectonic style. Correlative Caledonian nappes from adjacent faultbounded basement blocks were thrust diachronously resulting in transport transverse to the general thrusting direction. Thrusting oblique to the NW-SE fault zones and orogen parallel extension resulted in lateral-ramp folds in the cover and reactivation along the NW-SE faults imbricated the overlying nappes. The extent of basement imbrication and duplex formation is variable in the different segments. Within single segments, the basement imbrication and duplex-formation defined basement highs that roughly align in two parallel zones within the orogen. The site of the basement duplexes is probably controlled by older N-S fracture zones while the pinch- and-swell structure parallel to the orogen is caused by the individual deformation and thrusting behavior of the basement and cover sequences that are bound by the NW-SE fault zones. Thus the Caledonian orogen appears to have inherited the Precambrian structural grain of the underlying, Baltic Shield.
Zusammenfassung Der Baltische Schild Nordeuropas ist von im Proterozoikum angelegten Verwerfungen und Scherzonen mit nördlichem sowie und nordwestlichem Streichen durchzogen, welche während der spätpräkambrischen Öffnung des Iapetus-Ozeanes und der anschließenden, südöstlich gerichteten Überschiebung der kaledonischen Decken im ausgehenden Alt-Paläozoikum reaktiviert worden sind. Die Wiederbelebung dieses ererbten, durch steilstehende Störungen gekennzeichneten, rhombenförmigen Strukturmusters führte zu unterschiedlichen Absenkungsraten der Störungsbegrenzten Grundgebirgsblöcke und steuerte somit die Ablagerungsbedingungen in entstehenden Sedimentationströgen während der Öffnungsphase des Iapetus-Ozeans. Durch diesen Prozeß lassen sich latterale Unterschiede in Mächtigkeit und Fazies der jungpräkambrischen bis altpaläozoischen Deckensedimente entlang dem Nordwestrande des damaligen Kontinentes Baltica, sowie Differenzen in der metamorphen und strukturellen Entwicklung der durch Störungen begrenzten Blöcke während der Überschiebung der kaledonischen Decken und der Hebung des Gebirges erklären. Vertikale Blockverschiebungen und Kippungen von Blöcken relativ zueinander können beobachtete Unterschiede in den Abscherungs- und Überschiebungsniveaus, sowie unterschiedliche tektonische Baustile auf und vor (vor allem) zwischen Blöcken erklären helfen. Untereinander korrelierbare kaledonische Deckensegmente haben, in Bezug auf Transportrichtung und Strecke, voneinander unterschiedliche Wege oberhalb ihrer Untergrundsegmente zurückgelegt. Während dieser Überschiebung auf ein sich simultan veränderndes Relief ist es dabei zu Teilbewegungen schräg zur Hauptüberschiebungsrichtung gekommen, was seinerseits zu seitlichen Verzahnungen benachbarter Deckensegmente geführt hat. Die NWSE streichenden Blockgrenzen haben während lokaler Überschiebungen leicht schräg zu dieser Hauptrichtung als Widerlager und Rampen (lateral ramps) für die darübergleitenden Decken gewirkt, welche sich ihrerseits bei diesem Prozeß in orogentransversale Falten gelegt haben. Je nach ihrer Lage und Neigung sind die verschiedenen Segmente während der Kollisionsphase des kaledonischen Orogens in unterschiedlichem Grade von internen Störungen betroffen worden. Die durch intensive Internscherung hervorgerufenen Krustenverdickungen zeigen eine perlschnurartige Anordnung in zwei orogenparallele zonen, deren Anlage sich auf unterliegende und mitverfrachtete N-S Störungszonen zurückführen lassen kann. Das Anschwellen und Ausdünnen (pinch- and-swell) von tektonischen Einheiten entlang der Längsrichtung des Orogens läßt sich durch unterschiedliche Deformationsverhalten innerhalb der durch NW-SE Störungen begrenzten Segmente erklären. Die Kaledoniden Skandinaviens haben offensichtlich das strukturelle Gepräge ihrer präkaledonischen Unterlage ererbt.

Résumé Le bouclier baltique est traversé par des fractures protérozoïques orientées approximativement N-S et NW-SE. Ces failles furent réactivées d'abord au Précambrien tardif lors de l'extension correspondant à l'ouverture de l'Océan lapétus, ensuite au Protérozoïque moyen lors du charríage des nappes calédoniennes vers le SE. La réactivation de ces vieilles structures explique qu'on observe pour chaque bloc du socle faillé une subsidence et une sédimentation différente pendant la phase d'extension (ouverture du lapétus), ainsi qu'une évolution métamorphique et structurale distincte pendant le charriage des nappes calédoniennes et l'exhumation de l'orogène. Les deux groupes de failles définissent dans le socle des blocs à sections rhombiques qui présentaíent chacun une subsidence particulière pendant l'ouverture du lapétus, comme l'indiquent les variations d'épaisseur et de facies de leur couverture sédimentaire tardi-précambrienne (vendienne) à silurienne. Cette subsidence variable selon les blocs pourrait avoir contribué à induire des différences dans les niveaux de décollement et de charriage des nappes, ainsi que dans le style tectonique. Les unités tectonostratigraphiques des blocs adjacents furent charriées de façon diachronique avec comme résultat un transport transverse par rapport à la direction dominante du charriage. Ce déplacement oblique vers les zones de failles NW-SE et l'extension parallèle de l'orogène ont produit des plis transversaux dans la couverture; la réactivation des failles NW-SE s'est traduite par l'imbrication des nappes surincombantes. L'importance de cette imbrication et de la formation de duplex est variable selon les différents segments du socle. Pour chaque segment particulier, l'imbrication du socle et la formation de duplex ont engendré des culminations de socle alignés selon deux zones parallèles dans l'orogène. La position des duplex est probablement régie par de vieilles failles N-S alors que la structure en «pinch- and-swell» le long de l'orogène est causée par le caractère individuel de la déformation et du charriage du socle et de sa couverture, propre à chaque bloc limité par des failles NW-SE. L'orogenèse calédonienne a été ainsi fortement afffectée par les structures précambriennes du bouclier baltique sous-jacent.

, lapetus - . , , , , , lapetus. - - , , . , , , . , , . , . NW-SE (»side-wall ramps«) , . . , , , ; , , , - . (pinck- and-swell) , , NW-S . , - .
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