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951.
Dr. R. Siksna 《Pure and Applied Geophysics》1955,31(1):9-20
Zusammenfassung Konstruktionseinzelheiten eines photoelektrischen Kernzählers werden beschrieben. Die Bedienung des Zählers ist elektrifiziert und erfolgt durch elektromagnetische Ventile. Besondere Befeuchter werden benutzt. Ein Ansatz für visuelle Beobachtung der Nebelbildungserscheinungen in dem Absorptionsrohr ist eingeführt. Für Aussiebung der geladenen Kerne ist ein Kondensator angebaut, der in einfacher Weise in einen Grossionenzähler umgewandelt werden kann. Mit einer Kamera als Zusatzteil kann der Zähler in einen kombinierten photoelektrischen und photographischen Kondensationskernzähler umgewandelt werden.
Summary Details of the construction of a photo-electric nucleus counter are described. The operation of the counter is electrified and is carried out by electromagnetic valves. Special humidifiers are used. Visual observation of the fog formation phenomena in the absorption tube is introduced. A condenser for sifting the charged nuclei is built in, which in a simple way can be converted into a counter for large ions. As an accessory a camera is provided so that the counter can be used as a combined photo-electric and photographic condensation nuclei counter.相似文献
952.
953.
D.T.A. Symons 《Journal of Geodynamics》1985,2(2-3)
Paleomagnetic data from 46 sites (674 specimens) of the Westcoast Crystalline Gneiss Complex on the west coast of Vancouver Island using AF and thermal demagnetization methods yields a high blocking temperature WCB component (> 560°C) with a pole at 335°W, 66°N (δp = 4°, δm = 6°) and a lower coercivity WCA component ( 25 mT, < 500°C) with a pole at 52°W, 79°N (δp = 7°, δm = 8°). Further thermal demagnetization data from 24 sites in the Jurassic Island Intrusions also defines two high blocking temperature components. The IIA component pole is at 59°W, 79°N (δp = 7°, δm = 8°) and IIB pole at 130°W, 73°N (δp = 12°, δm = 13°). Combined with previous data from the Karmutsen Basalts and mid-Tertiary units on Vancouver Island and from the adjacent Coast Plutonic Complex, the geotectonic motions are examined for the Vancouver Island segment of the Wrangellian Subterrane of composite Terrane II of the Cordillera. The simplest hypothesis invokes relatively uniform translation for Terrane II from Upper Triassic to Eocene time producing 39° ± 6° of northward motion relative to the North American craton, combined with 40° of clockwise rotation during the Lower Tertiary. 相似文献
954.
M. L. Kaplan J. J. Charney K. T. WaightIII K. M. Lux J. D. Cetola A. W. Huffman A. J. Riordan S. D. Slusser M. T. Kiefer P. S. Suffern Y.-L. Lin 《Meteorology and Atmospheric Physics》2006,94(1-4):235-270
Summary In this paper, we will focus on the real-time prediction of environments that are predisposed to producing moderate-severe
(hazardous) aviation turbulence. We will describe the numerical model and its postprocessing system that is designed for said
prediction of environments predisposed to severe aviation turbulence as well as presenting numerous examples of its utility.
The purpose of this paper is to demonstrate that simple hydrostatic precursor circulations organize regions of preferred wave
breaking and turbulence at the nonhydrostatic scales of motion. This will be demonstrated with a hydrostatic numerical modeling
system, which can be run in real time on a very inexpensive university computer workstation employing simple forecast indices.
The forecast system is designed to efficiently support forecasters who are directing research aircraft to measure the environment
immediately surrounding turbulence.
The numerical model is MASS version 5.13, which is integrated over three different grid matrices in real-time on a university
workstation in support of NASA-Langley’s B-757 turbulence research flight missions. The model horizontal resolutions are 60,
30, and 15 km and the grids are centered over the region of operational NASA-Langley B-757 turbulence flight missions.
The postprocessing system includes several turbulence-related products including four turbulence forecasting indices, winds,
streamlines, turbulence kinetic energy, and Richardson numbers. Additionally there are convective products including precipitation,
cloud height, cloud mass fluxes, lifted index, and K-index. Furthermore, soundings, sounding parameters, and Froude number
plots are also provided. The horizontal cross section plot products are provided from 16,000–46,000 feet in 2,000 feet intervals.
Products are available every three hours at the 60 and 30 km grid interval and every 1.5 hours at the 15 km grid interval.
The model is initialized from the NWS ETA analyses and integrated two times a day. 相似文献
955.
Abstract Detailed low‐level wind data collected in southern New Brunswick each summer since 1973 have revealed the existence of a significant low‐level jet during the evening on many occasions. The major contributing factor is considered to be an opposing thermal wind generated by the land/sea surface temperature difference when the low‐level airflow parallels the coastline. The maximum wind is characteristically located between 300 and 500 m above msl. Intensities have been found as great as 15 m s‐1 in excess of the 1000‐m wind speed. A detailed study is presented for a well‐documented case on 8 July 1975, using hourly information from three stations near Fredericton, N.B., and Doppler measurements of the drift of a specially equipped research aircraft. There is clear evidence of an undulation in the altitude of the “nose” of the low‐level jet and of a progressive increase in intensity from early evening until midnight. 相似文献
956.
957.
MICHAEL R. LEEDER 《Sedimentology》1984,31(2):277-278
A previous proposal (Leeder, 1977) to test the magnitude of the solid-transmitted stresses due to bedload transport failed to confirm Bagnold's theory because the applied fluid stress contribution was not corrected for sidewall drag. Once this correction is made there is a reasonable correspondence of theory and experiment. 相似文献
958.
Lloyd S. Isaacson Edward D. Burton Richard T. Bush David R.G. Mitchell Scott G. Johnston Bennett C.T. Macdonald Leigh A. Sullivan Ian White 《Applied Geochemistry》2009
Discharge of Fe(II)-rich groundwaters into surface-waters results in the accumulation of Fe(III)-minerals in salinized sand-bed waterways of the Hunter Valley, Australia. The objective of this study was to characterise the mineralogy, micromorphology and pore-water geochemistry of these Fe(III) accumulations. Pore-waters had a circumneutral pH (6.2–7.2), were sub-oxic to oxic (Eh 59–453 mV), and had dissolved Fe(II) concentrations up to 81.6 mg L−1. X-ray diffraction (XRD) on natural and acid-ammonium-oxalate (AAO) extracted samples indicated a dominance of 2-line ferrihydrite in most samples, with lesser amounts of goethite, lepidocrocite, quartz, and alumino-silicate clays. The majority of Fe in the samples was bound in the AAO extractable fraction (FeOx) relative to the Na-dithionite extractable fraction (FeDi), with generally high FeOx:FeDi ratios (0.52–0.92). The presence of nano-crystalline 2-line ferrihydrite (Fe5HO3·4H2O) with lesser amounts of goethite (α-FeOOH) was confirmed by scanning electron microscopy (SEM) coupled with energy dispersive X-ray analysis (EDX), and transmission electron microscopy (TEM) coupled with selected area electron diffraction (SAED). In addition, it was found that lepidocrocite (γ-FeOOH), which occurred as nanoparticles as little as ∼5 lattice spacings thick perpendicular to the (0 2 0) lattice plane, was also present in the studied Fe(III) deposits. Overall, the results highlight the complex variability in the crystallinity and particle-size of Fe(III)-minerals which form via oxidation of Fe(II)-rich groundwaters in sand-bed streams. This variability may be attributed to: (1) divergent precipitation conditions influencing the Fe(II) oxidation rate and the associated supply and hydrolysis of the Fe(III) ion, (2) the effect of interfering compounds, and (3) the influence of bacteria, especially Leptothrix ochracea. 相似文献
959.
960.