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Parallel Measurements of Light Scattering and Characterization of Marine Particles in Water: An Evaluation of Methodology

Parallel Measurements of Light Scattering and Characterization of Marine Particles in Water: An Evaluation of Methodology PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 10

Book Description
The principal objective of this project is to evaluate various techniques for parallel (or nearly-parallel) determinations of light scattering and particle characteristics using a broad suite of experimental approaches and instruments, including both benchtop and in situ instrumentation. A second objective is to characterize variability in the volume scattering function and particle size distribution for various optical water types and samples.

Parallel Measurements of Light Scattering and Characterization of Marine Particles in Water: An Evaluation of Methodology

Parallel Measurements of Light Scattering and Characterization of Marine Particles in Water: An Evaluation of Methodology PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 10

Book Description
The principal objective of this project is to evaluate various techniques for parallel (or nearly-parallel) determinations of light scattering and particle characteristics using a broad suite of experimental approaches and instruments, including both benchtop and in situ instrumentation. A second objective is to characterize variability in the volume scattering function and particle size distribution for various optical water types and samples.

Light Scattering by Particles in Water

Light Scattering by Particles in Water PDF Author: Miroslaw Jonasz
Publisher: Elsevier
ISBN: 0080548679
Category : Science
Languages : en
Pages : 715

Book Description
Light scattering-based methods are used to characterize small particles suspended in water in a wide range of disciplines ranging from oceanography, through medicine, to industry. The scope and accuracy of these methods steadily increases with the progress in light scattering research. This book focuses on the theoretical and experimental foundations of the study and modeling of light scattering by particles in water and critically evaluates the key constraints of light scattering models. It begins with a brief review of the relevant theoretical fundamentals of the interaction of light with condensed matter, followed by an extended discussion of the basic optical properties of pure water and seawater and the physical principles that explain them. The book continues with a discussion of key optical features of the pure water/seawater and the most common components of natural waters. In order to clarify and put in focus some of the basic physical principles and most important features of the experimental data on light scattering by particles in water, the authors employ simple models. The book concludes with extensive critical reviews of the experimental constraints of light scattering models: results of measurements of light scattering and of the key properties of the particles: size distribution, refractive index (composition), structure, and shape. These reviews guide the reader through literature scattered among more than 210 scientific journals and periodicals which represent a wide range of disciplines. A special emphasis is put on the methods of measuring both light scattering and the relevant properties of the particles, because principles of these methods may affect interpretation and applicability of the results. The book includes extensive guides to literature on light scattering data and instrumentation design, as well as on the data for size distributions, refractive indices, and shapes typical of particles in natural waters. It also features a comprehensive index, numerous cross-references, and a reference list with over 1370 entries. An errata sheet for this work can be found at: http://www.tpdsci.com/Ref/Jonasz_M_2007_LightScatE.php *Extensive reference section provides handy compilations of knowledge on the designs of light scattering meters, sources of experimental data, and more *Worked exercises and examples throughout

Measurements of Angle-resolved Polarized Light Scattering by Seawater as a Tool to Characterize Natural Assemblages of Marine Particles

Measurements of Angle-resolved Polarized Light Scattering by Seawater as a Tool to Characterize Natural Assemblages of Marine Particles PDF Author: Daniel Warren Koestner
Publisher:
ISBN:
Category :
Languages : en
Pages : 227

Book Description
The light scattering properties of seawater play important roles in oceanic radiative transfer and optically-based methods for characterizing marine suspended particles from in situ and remote sensing measurements. In order to realize the full gamut of potential applications associated with light scattering in the ocean, advancements in the fundamental understanding of the effects of particle size and compositional characteristics on variability in scattering across various marine environments must be made. The recently commercialized LISST-VSF instrument measures the volume scattering function, Beta_p , the degree of linear polarization, DoLP_p , and scattering matrix element p_{22} associated with particle scattering at a single light wavelength (532 nm) with high angular resolution over the range ~0.1° to 155°. This thesis presents the first independent and thorough evaluation of LISST-VSF performance, including the development of necessary corrections for improved results and validation of such corrections using measurements and Mie scattering calculations for polystyrene bead suspensions. Seventeen seawater samples representing contrasting natural assemblages of particles from coastal environments near San Diego, California have been comprehensively characterized with laboratory measurements of angle-resolved polarized light scattering, particle size distribution (PSD), and particle composition in terms of various metrics derived from mass concentration and particulate absorption. Measurements of angle-resolved light scattering and PSD were made on original (unfiltered) seawater samples and particle size-fractionated samples obtained using 5 [mu]m and 20 [mu]m mesh filters. Although the effects of particle size and composition are complex, small particles ( 5 [mu]m in size) consistently produced a major or dominant contribution (~50-80%) to the particulate backscattering coefficient, b_{bp}, in both phytoplankton and non-algal dominated organic samples regardless of significant variations in PSD. The notable exception was a sample dominated by large-celled diatoms from microphytoplankton size range, which exemplifies a scenario when large particles ( 20 [mu]m) can produce a considerable contribution (~40%) to b_{bp}. Samples dominated by inorganic material, by contrast, consistently exhibited weaker contributions (~30−40%) of small particles to b_{bp}. The maximum value of DoLP_p, DoLP_{p,max}, was found to be weakly dependent on particle composition, but exhibited negative correlation with the proportion of relatively large sized particles in samples. The scattering matrix element p_{22} exhibited similiar trends as DoLP_{p,max} at 100o. In contrast, p_{22}(20o) was relatively unaffected by the presence of large sized particles but showed negative correlation with inorganic content of particulate assemblages. Finally, simple optically-based proxies for the estimation of particle size and compositional parameters which rely on polarized light scattering measurements at only one or two angles were developed.

Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 704

Book Description


Physical Optics of Ocean Water

Physical Optics of Ocean Water PDF Author: K.S. Shifrin
Publisher: Springer Science & Business Media
ISBN: 9780883185292
Category : Science
Languages : en
Pages : 308

Book Description


Response of Particulate Optical Properties to Coastal Mixing Processes: Analysis and Interpretation of Particle Light Scattering as Measured by Flow Cytometry

Response of Particulate Optical Properties to Coastal Mixing Processes: Analysis and Interpretation of Particle Light Scattering as Measured by Flow Cytometry PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description
During the period of this AASERT award we successfully participated in the Coastal Mixing and Optics Research initiative with the award supporting training of Rebecca Green, a PhD candidate in the MIT/WHOI Joint Program in Oceanography and Oceanographic Engineering. Rebecca made substantial progress towards receiving her degree, participated in three program research cruises and made valuable contributions to our research objectives. These objectives included quantifying relationships between particles, bulk water optical properties (both inherent and apparent) and physical processes that are important on the continental shelf of the U.S. east coast Rebecca's primary contribution has been to develop methods for the derivation of bulk optical properties from individual particle measurements based on flow cytometric analysis. This has included separation of the particle pool into different functional classes and characterization of the size-dependent contributions to light absorption and scattering. Since particles, and especially phytoplankton, are the greatest sources of optical variability in many oceanic and coastal systems, this type of investigation is important for understanding spatial and temporal changes in bulk properties such as ocean color and visibility.

Journal of the Optical Society of America

Journal of the Optical Society of America PDF Author:
Publisher:
ISBN:
Category : Imaging systems
Languages : en
Pages : 732

Book Description


Evaluation of an Analytical Model for Predicting Light Scattering from Cylindrically-Shaped Objects in the Ocean

Evaluation of an Analytical Model for Predicting Light Scattering from Cylindrically-Shaped Objects in the Ocean PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 11

Book Description
The polarization state of light in the ocean can be used to enhance visibility. We are investigating the consequences of scattering from non- spherically-symmetric particles on light propagation and visibility in the ocean. To calculate scattering from non-spherical marine micro-organisms, it is usually necessary to resort to approximate methods. One promising approximation is the coupled-dipole approach in which an arbitrarily-shaped object is divided into a number of identical elements arranged on a cubic lattice. Each element is treated as a spherical, dipolar oscillator with its polarizability specified by the real and imaginary parts of the index of refraction. Interactions between dipoles are included by determining the field at a particular dipole due to the incident field and the fields induced by the other dipole oscillators. The scattered field is then the sum of the fields due to each oscillator. The coupled-dipole method is promising because, in principle, an organism of any shape can be modelled, and all sixteen elements of the scattering matrix calculated. We have applied this approach to calculate scattering from spherical particles to verify the limits of the approximation, and from other shapes to investigate the effects of non-'sphericity and chirality on scattering. In particular, we calculated all 16 Mueller matrix elements for the scattering from a finite cylinder, a single-s=d helix, 14-strand helix, and ensembles of these particles. The effects of pitch, size, wavelength, and complex index of refraction were investigated. The results provide insights into the magnitude and type of depolarization effects associated with various marine microorganisms containing these structures.

Nuclear Science Abstracts

Nuclear Science Abstracts PDF Author:
Publisher:
ISBN:
Category : Nuclear energy
Languages : en
Pages : 730

Book Description


Light Absorption in Sea Water

Light Absorption in Sea Water PDF Author: Bogdian Wozniak
Publisher: Springer Science & Business Media
ISBN: 0387495606
Category : Science
Languages : en
Pages : 463

Book Description
This book provides a detailed description of light absorption and absorbents in seawaters with respect to provenance, region of the sea, depth of the occurrence and trophicity. The text is based on a substantial body of contemporary research results taken from the subject literature (over 400 references) and the work of the authors over a period of 30 years.