Academic literature on the topic 'Sedimentation'

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Journal articles on the topic "Sedimentation"

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Geniusas, Saulius. "Merleau-Ponty’s Phenomenology of Sedimentations." Journal of Phenomenological Psychology 54, no. 2 (November 28, 2023): 155–77. http://dx.doi.org/10.1163/15691624-20231422.

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Abstract The paper explores the meaning of the phenomenological concept of sedimentation in the framework of Merleau-Ponty’s phenomenology. The analysis I offer suggests that Merleau-Ponty initiates a transition from the constitutional problematic of sedimentations that we come across in Husserl’s phenomenology to the analysis of existential sedimentations. Merleau-Ponty accomplishes this transformation by binding the Husserlian conception of sedimentations with the Heideggerian conception of facticity. The distinction Merleau-Ponty draws between originary sedimentations and secondary sedimentations is especially important, for it allows one to claim that Merleau-Ponty recognizes all experiences as sedimented. Against the background of this realization, I offer a reevaluation of Merleau-Ponty’s cryptic remarks in the Phenomenology of Perception regarding the “original past,” also described as “a past that has never been a present.” I argue that these are metaphors for originary sedimentations. In place of a conclusion, I suggest that especially when the concept of sedimentation is universalized, we come to recognize its inherently paradoxical nature. In the final analysis, besides being a genetic concept, sedimentation is also a limit problem and a limit phenomenon.
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Rodriguez-Lopez, Patricia, Antonio Gutierrez-Lavin, Manuel M. Mahamud-Lopez, and Julio L. Bueno de las Heras. "New Developments in Sedimentation and Sedimentator Design." Recent Patents on Chemical Engineeringe 3, no. 2 (June 1, 2010): 129–41. http://dx.doi.org/10.2174/2211334711003020129.

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Rodriguez-Lopez, Patricia, Antonio Gutierrez-Lavin, Manuel M. Mahamud-Lopez, and Julio L. Bueno de las Heras. "New Developments in Sedimentation and Sedimentator Design." Recent Patents on Chemical Engineering 3, no. 2 (May 14, 2010): 129–41. http://dx.doi.org/10.2174/1874478811003020129.

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Maric, Filip, Margherita Poto, and Giuliana Panieri. "Sedimentation." Septentrio Educational, no. 1 (April 28, 2023): 94–97. http://dx.doi.org/10.7557/8.7061.

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Focus: To understand the role of sedimentation in creating the unique conditions of ocean floor ecosystems. Learning objectives: With this activity, pupils will gain a basic understanding of how sediments in the ocean settle on the ocean floor (sedimentation) and what this looks like. Key words: Settling, sediment, terrigenous, pelagic.
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Talkers, Ralph. "Erythrocyte Sedimentation Rate/Zeta Sedimentation Rate." Emergency Medicine Clinics of North America 4, no. 1 (February 1986): 87–93. http://dx.doi.org/10.1016/s0733-8627(20)30984-6.

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McCann, Tom. "Tectonics & Sedimentation." Zeitschrift der Deutschen Gesellschaft für Geowissenschaften 162, no. 2 (June 1, 2011): 91–92. http://dx.doi.org/10.1127/1860-1804/2011/0162-0091.

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Jonkus, Dalius. "Kultūros krizė ir fenomenologinė sedimentacijos samprata E. Husserlio filosofijoje." Problemos 105 (April 10, 2024): 74–87. http://dx.doi.org/10.15388/problemos.2024.105.6.

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Husserl names the dynamics of cultural objectifications with the term sedimentation, which includes the formulation of the discovered meaning in material sensory expressions and the reactivation of these passively existing meanings. This paper analyzes this concept of sedimentation and places it in the context of Husserl’s thoughts on the crisis of culture. Unlike the usual interpretations of Husserl’s philosophy of culture which state that the crisis of sciences arises from the inadequacy of their ‘scientificity’ and inability to solve the problems of the meaning of life, I argue that the crisis can be understood as the result of the duality of sedimentation. Sedimentations not only preserve knowledge, but also create the illusion that knowledge reproduces itself. When reflecting on the crisis of culture, Husserl turns from theoretical philosophy to practical philosophy.
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Eijsbouts, Tom. "Constitutional Sedimentation." Legal Issues of Economic Integration 23, Issue 1 (June 1, 1996): 51–60. http://dx.doi.org/10.54648/leie1996003.

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Huron, Samuel, Romain Vuillemot, and Jean-Daniel Fekete. "Visual Sedimentation." IEEE Transactions on Visualization and Computer Graphics 19, no. 12 (December 2013): 2446–55. http://dx.doi.org/10.1109/tvcg.2013.227.

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BRENCHLEY, PATRICK J. "Storm sedimentation." Geology Today 5, no. 4 (July 1989): 133–37. http://dx.doi.org/10.1111/j.1365-2451.1989.tb00645.x.

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Dissertations / Theses on the topic "Sedimentation"

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Yeoh, Jin Shaun. "Reservoir sedimentation control." Thesis, University of Bristol, 2005. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.412359.

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Siyam, Ahmed Musa. "Reservoir sedimentation control." Thesis, University of Bristol, 2000. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.324265.

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Fonseca, Fonseca Frank Rodolfo. "Sedimentation of oblate ellipsoids." [S.l.] : [s.n.], 2004. http://www.bsz-bw.de/cgi-bin/xvms.cgi?SWB11244205.

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Paulos, Yonas Kinfu. "Sedimentation between parallel plates." Thesis, University of British Columbia, 1991. http://hdl.handle.net/2429/30055.

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Settling basins can be shortened by using a stack of horizontal parallel plates which develop boundary layers in which sedimentation can occur. The purpose of this study is to examine the design parameters for such a system and to apply this approach to a fish rearing channel in which settling length is strictly limited. Flow between parallel rough and smooth plates has been modelled together with sediment concentration profile. Accurate description of boundary layer flow requires the solution of Navier-Stokes equations, and due to the complexity of the equations to be solved for turbulent flow some assumptions are made to relate the Reynolds stresses to turbulent kinetic energy and turbulent energy dissipation rate. The simplified equations are solved using a numerical method which uses the approach given by the TEACH code. The flow parameters obtained from the turbulent flow model are used to obtain the sediment concentration profile within the settling plates. Numerical solution of the sedimentation process is obtained by adopting the general transport equation. The lower plate is assumed to retain sediments reaching the bottom. The design of a sedimentation tank for a fish rearing unit with high velocity of flow has been investigated. The effectiveness of the sedimentation tank depends on the uniformity of flow attained at the inlet, and experiments were conducted to obtain the most suitable geometric system to achieve uniform flow distribution without affecting other performances of the fish rearing unit. The main difficulties to overcome were the heavy circulation present in the sedimentation tank and the clogging of the distributing system by suspended particles. Several distributing systems were investigated, the best is discussed in detail. It was concluded that a stack of horizontal parallel plates can be used in fish rearing systems where space is limited for settling sediments. Flow distribution along the vertical at the entrance to the plates determines the efficiency of the sediment settling process and a suitable geometrical configuration can be constructed to distribute the high velocity flow uniformly across the vertical. Numerical modelling of sediment removal ratio for flow between smooth and rough parallel plates has been calculated. The results show that almost the same pattern of sediment deposition occurs for both the smooth-smooth and rough-smooth plate arrangements.
Applied Science, Faculty of
Civil Engineering, Department of
Graduate
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Rothwell, Robin Guy. "Sedimentation on basin plains." Thesis, University of Southampton, 1994. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.240961.

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Couch, Matthew. "Aggregation, sedimentation and compaction." Thesis, University of Cambridge, 1992. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.260616.

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Dittmers, Klaus Hauke. "Late Weichselian to Holocene sedimentation in the inner Kara Sea : qualification and quantification of processes = Sedimentationsprozesse in der inneren Kara-See (Spät-Weichsel bis Holozän) /." Bremerhaven : Alfred-Wegener-Inst. für Polar- und Meeresforschung, 2006. http://www.gbv.de/dms/goettingen/510037178.pdf.

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Wünsch, Olaf. "Schwingungsinduzierte Sedimentation in viskoplastischen Fluiden." Kassel Univ.-Bibliothek, 2008. http://nbn-resolving.de/urn:nbn:de:hebis:34-2008011419992.

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Campos, Rogério. "Three-dimensional reservoir sedimentation model." Thesis, University of Newcastle Upon Tyne, 2001. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.421172.

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Blanchette, François Alain 1978. "Sedimentation in a stratified ambient." Thesis, Massachusetts Institute of Technology, 2003. http://hdl.handle.net/1721.1/29986.

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Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mathematics, 2003.
Includes bibliographical references (p. 147-156).
We study the interaction between settling particles and a stratified ambient in a variety of contexts. We first study the generation of large scale fluid motions by the localised release of a finite mass of particles in the form of plumes or gravity currents. We present the results of a combined theoretical and experimental study describing the evolution of particle clouds formed by the release of heavy particles. In the early stages of motion, particle clouds behave as turbulent fluid thermals; however, their radial expansion eventually stops and particles settle from the base of the cloud at their individual settling speed. We focus on deducing a criterion for the various modes of particle deposition from particle clouds in a stratified ambient. We proceed to study the deposition patterns resulting from particle-laden gravity currents that spread horizontally when released in a particle-free ambient. Using a box-model, we focus on bidisperse gravity currents and examine the resulting particle distribution and maximal deposit length. We then turn to suspensions where particles are initially present throughout the fluid. The simultaneous presence of particles and of a stratified ambient may lead to behaviour analogous to double-diffusive systems, with particles playing the role of a diffusing component. We examine the linear stability of the settling of a particle concentration gradient in a stratified fluid. Numerical simulations allow us to determine the stability of the system for a broad range of particle settling speeds and diffusion coefficients. We then report on layering arising from sedimentation in a density stratified ambient beneath an inclined wall.
(cont.) From our experimental study, we describe the series of horizontal intrusions formed by particle-free fluid intruding at its level of neutral buoyancy. We present numerical models describing the time evolution of the concentration of particles and the layer formation. Finally, we present an experimental and theoretical study of the combined influence of hindered settling and settling speed variations due to an ambient stratification. We develop a criterion for the stability of a suspension settling in a stratified ambient and experimental observations allow us to qualify the main features of this instability.
by François Alain Blanchette.
Ph.D.
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Books on the topic "Sedimentation"

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Bhattacharyya, Kumkum, and Vijay P. Singh. Reservoir Sedimentation. Boca Raton : Taylor & Francis, a CRC title, part of the Taylor & Francis imprint, a member of the Taylor & Francis Group, the academic division of T&F Informa, plc, 2018.: CRC Press, 2019. http://dx.doi.org/10.1201/9781351027502.

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Marzo, M., and C. Puigdefbregas, eds. Alluvial Sedimentation. Oxford, UK: Blackwell Publishing Ltd., 1993. http://dx.doi.org/10.1002/9781444303995.

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Garde, R. J. Reservoir sedimentation. Roorkee: INCOH Secretariat, 1995.

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A, Vanoni Vito, and American Society of Civil Engineers. Task Committee for the Preparation of the manual on sedimentation., eds. Sedimentation engineering. Reston, VA: American Society of Civil Engineers, 2006.

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M, Marzo, and Puigdefábregas C, eds. Alluvial sedimentation. Oxford [England]: Blackwell Scientific Publications, 1993.

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Reservoir sedimentation. Amsterdam: Elsevier, 1987.

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1926-, Harbaugh John Warvelle, ed. Simulating clastic sedimentation. New York: Van Nostrand Reinhold, 1989.

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Gao, Dengliang, ed. Tectonics and Sedimentation. Tulsa, Oklahoma: American Association of Petroleum Geologists, 2013. http://dx.doi.org/10.1306/m1001335.

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Erosion and sedimentation. 2nd ed. Cambridge: Cambridge University Press, 2010.

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Bhatnagar, Dharmvir K. Sedimentation pond design. S.l: s.n, 1992.

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Book chapters on the topic "Sedimentation"

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Chen, Wu, and Keith J. Scott. "Sedimentation." In Handbook of Powder Science & Technology, 635–82. Boston, MA: Springer US, 1997. http://dx.doi.org/10.1007/978-1-4615-6373-0_13.

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Tadros, Tharwat. "Sedimentation." In Encyclopedia of Colloid and Interface Science, 1043. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-20665-8_140.

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Bernhardt, Claus. "Sedimentation." In Particle Size Analysis, 109–60. Dordrecht: Springer Netherlands, 1994. http://dx.doi.org/10.1007/978-94-011-1238-3_5.

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Mehlhorn, Heinz. "Sedimentation." In Encyclopedia of Parasitology, 2495–96. Berlin, Heidelberg: Springer Berlin Heidelberg, 2016. http://dx.doi.org/10.1007/978-3-662-43978-4_4317.

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Mehlhorn, Heinz. "Sedimentation." In Encyclopedia of Parasitology, 1. Berlin, Heidelberg: Springer Berlin Heidelberg, 2015. http://dx.doi.org/10.1007/978-3-642-27769-6_4317-1.

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Redfern, Martin. "Sedimentation." In 50 Schlüsselideen Erde, 104–7. Berlin, Heidelberg: Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-39847-6_27.

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Basha, Mahin. "Sedimentation." In Springer Protocols Handbooks, 1–8. New York, NY: Springer US, 2019. http://dx.doi.org/10.1007/978-1-0716-0134-1_1.

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Gygi, Reinhart A. "Sedimentation." In Quantitative Geology of Late Jurassic Epicontinental Sediments in the Jura Mountains of Switzerland, 41–106. Basel: Springer Basel, 2011. http://dx.doi.org/10.1007/978-3-0348-0136-2_4.

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Shammas, Nazih K., Inder Jit Kumar, Shoou-Yuh Chang, and Yung-Tse Hung. "Sedimentation." In Physicochemical Treatment Processes, 379–429. Totowa, NJ: Humana Press, 2005. http://dx.doi.org/10.1385/1-59259-820-x:379.

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Chaney, Ronald C. "Sedimentation." In Marine Geology and Geotechnology of the South China Sea and Taiwan Strait, 217–21. Boca Raton : CRC Press, 2021.: CRC Press, 2020. http://dx.doi.org/10.1201/9781003102328-12.

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Conference papers on the topic "Sedimentation"

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Wang, Shouxin, Yabing Guo, and Yuxian Hu. "Mathematics Model of Sedimentation and Application in Industrial Sedimentation." In 2010 International Conference on E-Product E-Service and E-Entertainment (ICEEE 2010). IEEE, 2010. http://dx.doi.org/10.1109/iceee.2010.5660549.

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Turlej, Tymoteusz. "MODERN SEDIMENTATION TECHNIQUES." In 18th International Multidisciplinary Scientific GeoConference SGEM2018. Stef92 Technology, 2018. http://dx.doi.org/10.5593/sgem2018/5.1/s20.071.

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ghasemey, ehsab. "Video: Sedimentation fractals." In 75th Annual Meeting of the APS Division of Fluid Dynamics. American Physical Society, 2022. http://dx.doi.org/10.1103/aps.dfd.2022.gfm.v0011.

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Grindeland, Thomas R., Hans R. Hadley, and Anand Raman. "Dam Removal Sedimentation Evaluation." In Joint Conference on Water Resource Engineering and Water Resources Planning and Management 2000. Reston, VA: American Society of Civil Engineers, 2000. http://dx.doi.org/10.1061/40517(2000)260.

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Zhang, Zhongzhen, and Andrea Prosperetti. "Sedimentation of 1,024 Particles." In ASME 2005 Fluids Engineering Division Summer Meeting. ASMEDC, 2005. http://dx.doi.org/10.1115/fedsm2005-77133.

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This paper demonstrates the performance of PHYSALIS, a numerical method for the direct numerical simulation of Navier-Stokes flows with many solid spheres. The particles may be fixed or mobile, and they may have different radii. The basic idea of the method stems from the observation that, due to the no-slip condition, the fluid velocity in the immediate neighborhood of the particle differs little from a rigid-body velocity field so that it is legitimate to neglect the square of this difference. With the aid of a suitable transformation, it is possible to exploit this observation to introduce an auxiliary velocity field that satisfies the Stokes equations in a thin layer of cells adjacent to the particle. The known general solution of the Stokes equations can then be used to bridge the gap between a finite-difference solution on a regular grid and the particle surface. After a brief summary of the method, the paper presents the results of validation studies for the flow past a stationary sphere and the motion of a sphere settling in a container under gravity. The main motivation for the development of the method was however its ability to deal with a large number of particles. To demonstrate this point, some results of the simulation of the gravitational settling of 1,024 spheres are shown. The time evolution of the spatial arrangement of the particles is investigated by means of the two-particle distribution function.
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Turlej, Tymoteusz. "SEDIMENTATION OF FLOCCULATE SUSPENSION." In 19th SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings. STEF92 Technology, 2019. http://dx.doi.org/10.5593/sgem2019/3.1/s12.064.

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García, Marcelo, and Fabián López. "Sedimentation in Vegetated Rivers." In Wetlands Engineering and River Restoration Conference 1998. Reston, VA: American Society of Civil Engineers, 1998. http://dx.doi.org/10.1061/40382(1998)156.

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Fripp, Jon, Greg Morris, Seyed Hajimirzaie, and Claudia C. Hoeft. "Sedimentation and Small Dams." In World Environmental and Water Resources Congress 2020. Reston, VA: American Society of Civil Engineers, 2020. http://dx.doi.org/10.1061/9780784482971.019.

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Yang, Dongfang, Danfeng Yang, Ming Wang, Sixi Zhu, and Fengyou Wang. "Sedimentation process and high sedimentation rate position of Cu in Jiaozhou Bay." In 2016 3rd International Conference on Materials Engineering, Manufacturing Technology and Control. Paris, France: Atlantis Press, 2016. http://dx.doi.org/10.2991/icmemtc-16.2016.359.

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Natt, Jasdeep, Ray Hashemi, Azita Bahrami, Mahmood Bahar, Nicholas Tyler, and Jay Hodgson. "Predicting Future Climate Using Algae Sedimentation." In 2012 Ninth International Conference on Information Technology: New Generations (ITNG). IEEE, 2012. http://dx.doi.org/10.1109/itng.2012.121.

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Reports on the topic "Sedimentation"

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Rector, D. R., and B. C. Bunker. Sedimentation models. Office of Scientific and Technical Information (OSTI), September 1995. http://dx.doi.org/10.2172/108208.

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Hall, Brad R., and William A. Thomas. Truckee River Sedimentation Study. Fort Belvoir, VA: Defense Technical Information Center, September 1993. http://dx.doi.org/10.21236/ada269837.

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Blair, R. B., H. A. Wolaver, and V. M. Burger. OU3 sediment dating and sedimentation rates. Office of Scientific and Technical Information (OSTI), August 1994. http://dx.doi.org/10.2172/10191618.

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Shilts, W. Principles of Glacial Dispersal and Sedimentation. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1991. http://dx.doi.org/10.4095/132390.

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Clague, J. J. Chapter 12: Quaternary Glaciation and Sedimentation. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1991. http://dx.doi.org/10.4095/134099.

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Swift, Donald J., and Alan W. Niedoroda. Modeling Sedimentation on the Continental Margin. Fort Belvoir, VA: Defense Technical Information Center, September 1997. http://dx.doi.org/10.21236/ada627976.

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Mosher, D. C., J. Shimeld, R. Jackson, D. Hutchinson, C B Chapman, D. Chian, J. Childs, L. Mayer, B. Edwards, and J. Verhoef. Sedimentation in Canada Basin, western Arctic. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2011. http://dx.doi.org/10.4095/287924.

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Heiken, G., D. Krier, and M. G. Snow. Intracaldera volcanism and sedimentation - Creede Caldera, Colorado. Office of Scientific and Technical Information (OSTI), June 1997. http://dx.doi.org/10.2172/484542.

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Dietrich, J. R., and J. Dixon. Structural and Physiographic Setting of Tertiary Sedimentation. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1987. http://dx.doi.org/10.4095/126953.

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Lisle, Thomas E., and Rand E. Eads. Methods to measure sedimentation of spawning gravels. Berkeley, CA: U.S. Department of Agriculture, Forest Service, Pacific Southwest Research Station, 1991. http://dx.doi.org/10.2737/psw-rn-411.

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