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William A. Bassett 《Physics of the Earth and Planetary Interiors》1980,23(4):337-340
The Wilson electron synchrotron at Cornell University has recently undergone modifications which enable it to produce a highly collimated X-ray beam of 1015 photons (s mrad. 10% bandwidth)?1 in the range from 1 to 40 keV (12.4 to 0.31 Å wavelength). It is expected that a monochromatic beam produced from this source will have at least a hundred times the intensity of the X-rays from a rotating anode source. It is hoped that the use of a position-sensitive detector will improve the detection efficiency by another factor of a hundred over photographic film. If these improvements are realized, it should be possible to conduct real-time or nearly real-time diffraction experiments in the diamond anvil cell. The technique will be used to collect data for experiments in which slower data collecting would mean missing transient phenomena. The technique will also be useful for making studies during conditions that cause deterioration of the experimental apparatus such as graphitization of the diamonds or creep of the metal parts. 相似文献
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A. E. Green M. J. Judd J. K. McAneney M. S. Astill P. T. Prendergast 《Boundary-Layer Meteorology》1991,57(1-2):1-15
A rapid response drag anemometer for measuring streamwise and lateral components of horizontal windspeed is described. Theory of operation, design and calibration are discussed with emphasis on the electronic preconditioning of signals and problems associated with using a mechanically resonant system as a sensor. Field comparisons showed half-hourly means and standard deviations of the streamwise component to be within 8% and 5% of respective values obtained from a 3-dimensional sonic anemometer. The lateral component from the drag anemometer was significantly more noisy than that from the 3-D sonic due to induced oscillations arising from vortex shedding. After mechanical and electronic filtering, half-hourly standard deviation comparisons agreed to within 6% for this component. Friction velocities obtained from the drag anemometer in combination with a 1-D sonic, agreed with measurements from the 3-D sonic anemometer to within 4% over a measured range of 0.05 to 1.2 m s-1 相似文献
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Are Taxonomic Distinctness measures compliant to other ecological indicators in assessing ecological status? 总被引:1,自引:0,他引:1
Salas F Patrício J Marcos C Pardal MA Pérez-Ruzafa A Marques JC 《Marine pollution bulletin》2006,52(7):817-829
Assessing the ecological status, a concept implemented in the European Water Framework Directive [EC, 2000. Directive of the European Parliament and of the Council 2000/60/EC establishing a framework for community action in the field of water policy PE-CONS 3639/1/00, p. 72], requires the application of methods capable of distinguishing different levels of ecological quality. The Average Taxonomic Distinctness has been used as tool in this context, and we tested the robustness of Taxonomic Distinctness measures applying it in different scenarios (estuarine eutrophication, organic pollution, and re-colonisation after physical disturbance), analysing simultaneously its compliance to other types of ecological indicators. Results show that, in most of the case studies, only Total Taxonomic Distinctness was relatively satisfactory in discriminating between disturbed situations. Other Taxonomic Distinctness measures have not proved to be more sensitive than other ecological indicators (Shannon-Wiener, Margalef, and Eco-Exergy indices). Therefore, this approach does not seem to be particularly helpful in assessing systems' ecological status with regard to the WFD implementation. 相似文献
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Infrared (IR) imagery of microbreaking waves in the ocean and laboratory showed modulation of breaking by swell and paddle-generated waves, respectively. Skin temperature also was modulated by the long waves, with the maxima occurring on the rear face of the long waves in both the laboratory and the field. The IR imagery from the ocean and laboratory showed that long-wave-induced microbreaking occurred at or near the long wave crest, and the resulting warm wakes occurred on the rear face. Thus, microbreaking waves generated near the crest of low-amplitude long waves can produce modulation with the maxima on the rear face. This mechanism was shown to be responsible for modulation of the measured in the laboratory and also likely contributed to the modulation observed in the field. 相似文献
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