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Environmental Research Papers

Environmental Research Papers
Author:
Publisher:
Total Pages: 42
Release: 1993
Genre: Environmental geology
ISBN:

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Government Reports Annual Index

Government Reports Annual Index
Author:
Publisher:
Total Pages: 1686
Release: 1995
Genre: Research
ISBN:

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Sections 1-2. Keyword Index.--Section 3. Personal author index.--Section 4. Corporate author index.-- Section 5. Contract/grant number index, NTIS order/report number index 1-E.--Section 6. NTIS order/report number index F-Z.


The AN/FPS-118 OTH Radar

The AN/FPS-118 OTH Radar
Author: B. S. Dandekar
Publisher:
Total Pages: 110
Release: 1996
Genre: Ionospheric radio wave propagation
ISBN:

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The Statistical Relations Among Q, Kp, and the Global Weather Central -K Indices

The Statistical Relations Among Q, Kp, and the Global Weather Central -K Indices
Author: B. S. Dandekar
Publisher:
Total Pages: 40
Release: 1982
Genre: Auroras
ISBN:

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The K index determined by the Air Force Global Weather Central has been compared with Kp and Q (from Sodankyla) for the period March 1978 - May 1981 to determine empirical relations between Kp vs K, Q vs Kp, and Q vs K. The study shows that the K index is a reasonably good measure of Kp during most of the time. The time-dependent relations between Q and K, and Kp and K are derived, so that one can convert the K (AFGWC) index to the Kp or Q index for specification of the auroral ionosphere in the Experimental Radar System test region.


An Algorithm for Determining the Boundary of Auroral Precipitation Using Data from the SSJ/3 Sensor

An Algorithm for Determining the Boundary of Auroral Precipitation Using Data from the SSJ/3 Sensor
Author: David A. Hardy
Publisher:
Total Pages: 42
Release: 1980
Genre: Algorithms
ISBN:

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In support of the Global Weather Central of the Air Weather Service, we have developed computer techniques to determine, in near real time, the equatorward boundary of the auroral oval using the data from the SSJ/3 sensors flown on board the DMSP satellites. The boundary is determined on both the morning and evening sides of the oval and in both northern and southern auroral zones. Three tests are used in the boundary determination, one on the evening side and two on the morning side of the auroral oval. On the evening side of the auroral zone, since low energy particles always are observed at the lowest latitude, the boundary is determined by testing the summed counts in the six channels of the SSJ/3 detector covering the energy range from 110 eV to 1000 eV. The boundary is chosen when the summed counts exceed 30 for 3 successive seconds. The data are always tested as a function of increasing magnetic latitude. On the morning side, high energy electrons are always observed first. Since the channels measuring high energy electrons may be contaminated by penetrating particles from the ring belts, two tests are required. The first test picks the boundary at the point where three successive ratios of 4-sec averages of channel 8 to channel 9 are less than 5. The second test chooses the boundary where the ratio of the summed counts in channels 1 through 4 of the SSJ/3 sensor to channels 5 through 8 exceeds 1.5 or is less than 0.5 for 3 successive seconds.


Derivation of a Self-Consistent Auroral Oval Model Using the Auroral Boundary Index

Derivation of a Self-Consistent Auroral Oval Model Using the Auroral Boundary Index
Author: Keith A. Anderson
Publisher:
Total Pages: 110
Release: 2004-06-01
Genre: Auroras
ISBN: 9781423519201

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The position and intensity of the auroral oval has many implications for the Air Force from determining the effects of incoming electron flux on DoD systems to modeling the ionosphere to exploit current HF communications capabilities. The auroral morphology is a good indicator of the level at which space weather and its near-Earth consequences are occurring, and thus it is important to develop an auroral prediction model. However, since no purely physics-based models exist to describe the temporal and spatial evolution of the auroral zone, space weather practitioners and researchers are forced to produce statistical representations, "organized" by some relevant geophysical parameter. Currently, the most widely used model is the Hardy et al. (1985) auroral oval model, which is binned according to the Kp index. The Kp index is a mid-Iatitude measure of planetary geomagnetic activity, and was presumed to be well- correlated to the size and shape of the auroral region. However, subsequent research has shown that Kp is probably not the best binning parameter. This study used the Auroral Boundary Index (ABI) to parameterize the statistics of the auroral oval location since it is a measurement of the electron fluxes computed directly from sensors aboard the DMSP satellites. Thus, the current work represents a move toward a more self- consistent-and presumably more accurate-climatological representation of the auroral oval boundaries. This was accomplished by recreating the process performed by Hardy et al., substituting the ABI for the Kp index and deriving an entirely new set of auroral ovals based on almost 11 years ofDMSP data from the F8 and F9 satellites. To quantitatively assess the differences between the two models, electron flux values were compared to actual DMSP data of individual satellite passes. Preliminary findings suggest that the new ABI auroral ov


Auroral Plasma Physics

Auroral Plasma Physics
Author: Götz Paschmann
Publisher: Springer Science & Business Media
Total Pages: 494
Release: 2012-12-06
Genre: Science
ISBN: 9400710860

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This volume gives a broad synthesis of the current knowledge and understanding of the plasma physics behind the aurora. The aurora is not only one of the most spectacular natural phenomena on Earth, but the underlying physical processes are expected to be ubiquitous in the plasma universe. Recognizing the enormous progress made over the last decade) through in situ and groundbased measurements as well as theoretical modelling, it seemed timely to write the first comprehensive and integrated book on the subject. Recent advances concern the clarification of the nature of the acceleration process of the electrons that are responsible for the visible aurora, the recognition of the fundamental role of the large-scale current systems in organizing the auroral morphology, and of the interplay between particles and electromagnetic fields.