Measurement of Soil Water Content Using the Combined Time-domain Reflectometry-thermal Conductivity Probe

Measurement of Soil Water Content Using the Combined Time-domain Reflectometry-thermal Conductivity Probe PDF Author: Thomas Henry Williams Baker
Publisher:
ISBN:
Category : Soil moisture
Languages : en
Pages : 4

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Measurement of Soil Water Content Using the Combined Time-domain Reflectometry-thermal Conductivity Probe

Measurement of Soil Water Content Using the Combined Time-domain Reflectometry-thermal Conductivity Probe PDF Author: Thomas Henry Williams Baker
Publisher:
ISBN:
Category : Soil moisture
Languages : en
Pages : 4

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Soil Water Measurement

Soil Water Measurement PDF Author: J. David Cooper
Publisher: John Wiley & Sons
ISBN: 1119106036
Category : Science
Languages : en
Pages : 368

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Book Description
This book is written for all those involved in measurement of soil water phenomena, whether they be environmental scientists, field technicians, agronomists, meteorologists, hydrogeologists, foresters, physical geographers, civil or water engineers or students in these subjects. It contains a comprehensive description of all the major methods used for measurement of soil water content and potential, solute concentration, transport and balance of water and solutes, including recharge to groundwater aquifers. The emphasis is firmly on techniques which can be applied in the field or on samples obtained from the field. The theory and practice of the workings of the main instruments and methods available is described, along with practical tips on surmounting some of the main difficulties and explanations of many commonly encountered jargon words.

Development and Validation of TDR-based Sensors for Thermal Conductivity and Soil Suction Measurements

Development and Validation of TDR-based Sensors for Thermal Conductivity and Soil Suction Measurements PDF Author: Nan Zhang
Publisher:
ISBN:
Category : Soil matric potential
Languages : en
Pages : 263

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Book Description
Simultaneous measurement of soil thermal conductivity, moisture content, dry density, and soil suction is a challenging issue and very important to the design of geothermal-related structures such as geothermal energy piles (GEP), ground source heat pump (GSHP) systems, borehole thermal energy storage (BTES) systems, etc. The measurement of these properties is mainly done in laboratory conditions, which can be time consuming. Hence, an attempt is made in this research to develop a new field sensor that can provide these properties in about the same timeframe. The TDR technique has been used successfully to measure soil moisture content and dry density by analyzing the soil dielectric constant (Ka) and the electrical conductivity (ECb) obtained from TDR waveforms. The objective of this research is to develop a new thermo-time domain reflectometry (TDR) probe and a moisture/suction TDR probe to better achieve these measurements. The thermo-TDR probe has three probes of the same diameter and length, with resistance wire embedded in the center probe, and three thermocouples installed in each probe. The probe calibrations for Ka and ECb were completed by testing five different chemicals with known Ka values, and NaCl and KCl solutions with different concentrations. The probe was then evaluated by testing four different materials, i.e., three sands and kaolin clay, and validating them against the KD2 standard probe for measurement of soil thermal properties. Laboratory experiments employing the thermo-TDR probe were then performed on quartz sands, sand-sand mixtures, and sand-clay mixtures to study the effects of the quartz content, particle size, moisture content, dry density, and clay content on soil thermal conductivity. Based on the experimental results on sand-clay mixtures, a continuum soil thermal conductivity prediction model was developed. The model overcame the shortcomings of the existing models, which accounts for the quartz content effect and prediction of soil thermal conductivity continuously over the entire range of soil types. The moisture/suction TDR probe has two steel stainless probes and a gypsum block attached to half of the probes. The calibration of the probe is conducted by modified pressure plate tests to establish the relationship between Ka and the matric suction of the gypsum block. Laboratory experiments on silty sand, including the staged-drying test and absorption and desorption tests, were performed to evaluate the probe and to study the equilibrium or response time of the gypsum block being equilibrated with surrounding soils

Methods of Soil Analysis, Part 4

Methods of Soil Analysis, Part 4 PDF Author: Jacob H. Dane
Publisher: John Wiley & Sons
ISBN: 089118841X
Category : Technology & Engineering
Languages : en
Pages : 1744

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Book Description
The best single reference for both the theory and practice of soil physical measurements, Methods, Part 4 adopts a more hierarchical approach to allow readers to easily find their specific topic or measurement of interest. As such it is divided into eight main chapters on soil sampling and statistics, the solid, solution, and gas phases, soil heat, solute transport, multi-fluid flow, and erosion. More than 100 world experts contribute detailed sections.

Using Time Domain Reflectometry to Measure Frost Depth and Unfrozen Water Content in Soil

Using Time Domain Reflectometry to Measure Frost Depth and Unfrozen Water Content in Soil PDF Author: David J. Mulla
Publisher:
ISBN:
Category : Runoff
Languages : en
Pages : 178

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Selected Water Resources Abstracts

Selected Water Resources Abstracts PDF Author:
Publisher:
ISBN:
Category : Water
Languages : en
Pages : 656

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New Approaches to Soil Water Content Measurement Using Electromagnetic Methods

New Approaches to Soil Water Content Measurement Using Electromagnetic Methods PDF Author: Gordon C. Starr
Publisher:
ISBN:
Category :
Languages : en
Pages : 232

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Canadian Geotechnical Journal

Canadian Geotechnical Journal PDF Author:
Publisher:
ISBN:
Category : Engineering geology
Languages : en
Pages : 822

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Encyclopedia of Agrophysics

Encyclopedia of Agrophysics PDF Author: Jan GliƄski
Publisher: Springer Science & Business Media
ISBN: 9048135842
Category : Technology & Engineering
Languages : en
Pages : 1075

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Book Description
This Encyclopedia of Agrophysics will provide up-to-date information on the physical properties and processes affecting the quality of the environment and plant production. It will be a "first-up" volume which will nicely complement the recently published Encyclopedia of Soil Science, (November 2007) which was published in the same series. In a single authoritative volume a collection of about 250 informative articles and ca 400 glossary terms covering all aspects of agrophysics will be presented. The authors will be renowned specialists in various aspects in agrophysics from a wide variety of countries. Agrophysics is important both for research and practical use not only in agriculture, but also in areas like environmental science, land reclamation, food processing etc. Agrophysics is a relatively new interdisciplinary field closely related to Agrochemistry, Agrobiology, Agroclimatology and Agroecology. Nowadays it has been fully accepted as an agricultural and environmental discipline. As such this Encyclopedia volume will be an indispensable working tool for scientists and practitioners from different disciplines, like agriculture, soil science, geosciences, environmental science, geography, and engineering.

Applications of Thermo-TDR Sensors for Soil Physical Measurements

Applications of Thermo-TDR Sensors for Soil Physical Measurements PDF Author: Yili Lu
Publisher:
ISBN:
Category : Electronic books
Languages : en
Pages : 0

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Book Description
Advanced sensors provide new opportunities to improve the understanding of soil properties and processes. One such sensor is the thermo-TDR sensor, which combines the functions of heat pulse probes and time domain reflectometry probes. Recent advancements in fine-scale measurements of soil thermal, hydraulic, and electrical properties with the thermo-TDR sensor enable measuring soil state variables (temperature, water content, and ice content), thermal and electrical properties (thermal diffusivity, heat capacity, thermal conductivity, and bulk electrical conductivity), structural parameters (bulk density and air-filled porosity) and fluxes (heat, water, and vapor) simultaneously. This chapter describes the theory, methodology, and potential applications of the thermo-TDR technique.