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Novel Techniques to Determine Soil Evaporation Rates

Novel Techniques to Determine Soil Evaporation Rates PDF Author: Kashifa Rumana
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Soil water evaporation is a critical component of both the surface energy balance and the hydrologic cycle, coupling heat and water transfer between land and atmosphere. Bare-soil evaporation and plant-soil-atmospheric interactions are important components of the water balance, especially in semiarid and arid regions. Soil evaporation has been thoroughly studied during the past century, yielding many methods and models. However, none of the methods have adequately addressed the needs for in situ and real-time monitoring of soil evaporation. The objectives of this research project were to track soil water evaporation losses using two different methods: a heat pulse probe (HPP) array and a fully automated microlysimeter (FAML). The HPP consists of a heater needle and five thermistor needles; when rotated to an angle of 27.3℗ʻ from a vertical orientation, it yielded temperature measurements every 3 mm within the soil profile. On the application of heat input to a resistance wire in the heater needle, the remaining thermistor needles measured the temperature response at a fixed distance of 6.5 mm from the heater. Results from our study demonstrate application of the sensible heat balance approach that provided reasonable estimates of subsurface evaporation rates. Inconsistencies due to the inability of the HPP to estimate evaporation rates in the near-surface "undetectable zone" are also reported in comparison to actual stage-2 evaporation based on the mass balance method. Additionally, deviations from the prescribed installation angle introduced errors when calculating the temperature gradient; hence, a vertical spacing algorithm was developed to resolve spacing errors. In the third chapter, a fully automated design is discussed based on the microlysimeter concept with the enhancement of an 8- cm deep lysimeter that was mounted on a 10 kg load cell for real-time monitoring diurnal evaporation rates from bare soil. The comparison with HYDRUS-1D simulation validated the FAML measured instantaneous evaporation rates with slight disparity toward the end of the experiment. Overall, this study shows two feasible methods for estimating real time evaporation rates in situ over prolonged periods with the aid of the HPP or the FAML. These tools can assist researchers with improved assessment of soil evaporation while taking into account proper correction methods.

Novel Techniques to Determine Soil Evaporation Rates

Novel Techniques to Determine Soil Evaporation Rates PDF Author: Kashifa Rumana
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Soil water evaporation is a critical component of both the surface energy balance and the hydrologic cycle, coupling heat and water transfer between land and atmosphere. Bare-soil evaporation and plant-soil-atmospheric interactions are important components of the water balance, especially in semiarid and arid regions. Soil evaporation has been thoroughly studied during the past century, yielding many methods and models. However, none of the methods have adequately addressed the needs for in situ and real-time monitoring of soil evaporation. The objectives of this research project were to track soil water evaporation losses using two different methods: a heat pulse probe (HPP) array and a fully automated microlysimeter (FAML). The HPP consists of a heater needle and five thermistor needles; when rotated to an angle of 27.3℗ʻ from a vertical orientation, it yielded temperature measurements every 3 mm within the soil profile. On the application of heat input to a resistance wire in the heater needle, the remaining thermistor needles measured the temperature response at a fixed distance of 6.5 mm from the heater. Results from our study demonstrate application of the sensible heat balance approach that provided reasonable estimates of subsurface evaporation rates. Inconsistencies due to the inability of the HPP to estimate evaporation rates in the near-surface "undetectable zone" are also reported in comparison to actual stage-2 evaporation based on the mass balance method. Additionally, deviations from the prescribed installation angle introduced errors when calculating the temperature gradient; hence, a vertical spacing algorithm was developed to resolve spacing errors. In the third chapter, a fully automated design is discussed based on the microlysimeter concept with the enhancement of an 8- cm deep lysimeter that was mounted on a 10 kg load cell for real-time monitoring diurnal evaporation rates from bare soil. The comparison with HYDRUS-1D simulation validated the FAML measured instantaneous evaporation rates with slight disparity toward the end of the experiment. Overall, this study shows two feasible methods for estimating real time evaporation rates in situ over prolonged periods with the aid of the HPP or the FAML. These tools can assist researchers with improved assessment of soil evaporation while taking into account proper correction methods.

Soil and Environmental Analysis

Soil and Environmental Analysis PDF Author: Keith A. Smith
Publisher: CRC Press
ISBN: 0203908600
Category : Science
Languages : en
Pages : 654

Book Description
Reviews a wide range of methods for soil physical analysis. Considers applications, accuracy, measurement time, and cost of equipment. Provides examples of applications.

Evapotranspiration in the Soil-Plant-Atmosphere System

Evapotranspiration in the Soil-Plant-Atmosphere System PDF Author: Viliam Novak
Publisher: Springer Science & Business Media
ISBN: 9400738404
Category : Science
Languages : en
Pages : 263

Book Description
Evapotranspiration and its components (evaporation and transpiration) as a process is one of the basic terms of Earth's water balance; its importance is accented by the fact that transpiration is the vital element of the biomass production process. The second important property of evapotranspiration is its extreme consumption of solar energy, thus controlling the temperature of the atmosphere and creating favourable conditions for life. Evapotranspiration as an energy consuming process is also the connection between the energy and mass cycles of the Earth. Evapotranspiration is a process performing in the Soil–Plant –Atmosphere System (SPAS); therefore this book is presenting and quantifying it as a catenary process, describing transport of water in the soil, including root extraction patterns and methods of its evaluation. Transport of water through the plant and from the canopy to the atmosphere is also described and quantified. A variety of evapotranspiration (and its components evaporation and transpiration) calculation methods are described, starting from empirical methods up to the most sophisticated ones based on the solution of the transport equations of water and energy in the SPAS. The most important (and widely used) calculation method - modified Penman–Monteith method is described in details, ready to be used with data in the book only. Water balance method of evapotranspiration estimation as well as sap flow method description can be found in the book as well. The book can be used by hydrologists, biologists, meteorologists and other specialists as well as by ecology students. Key themes: soil hydrology – evapotranspiration – hydropedology– plant physiology – water movement in soils – evaporation – transpiration Dr. Viliam Novák is a water resources scientist at the Institute of Hydrology of the Slovak Academy of Sciences in Bratislava (Slovakia).

Methods of Soil Analysis, Part 3

Methods of Soil Analysis, Part 3 PDF Author: D. L. Sparks
Publisher: John Wiley & Sons
ISBN: 0891188258
Category : Technology & Engineering
Languages : en
Pages : 1424

Book Description
A thorough presentation of analytical methods for characterizing soil chemical properties and processes, Methods, Part 3 includes chapters on Fourier transform infrared, Raman, electron spin resonance, x-ray photoelectron, and x-ray absorption fine structure spectroscopies, and more.

The Relation of Desert Plants to Soil Moisture and to Evaporation

The Relation of Desert Plants to Soil Moisture and to Evaporation PDF Author: Burton Edward Livingston
Publisher:
ISBN:
Category : Evapotranspiration
Languages : en
Pages : 96

Book Description


Evaporation of Water With Emphasis on Applications and Measurements

Evaporation of Water With Emphasis on Applications and Measurements PDF Author: Frank E. Jones
Publisher: CRC Press
ISBN: 1351080415
Category : Science
Languages : en
Pages : 200

Book Description
The loss of water from lakes, rivers, oceans, vegetation, and the earth, as well as man-made structures such as reservoirs and irrigation conduits, is a major concern of hydrologists and irrigation specialists. This loss, compounded by the lack of usable water in some areas, indicates a need for field and laboratory research that will contribute to the understanding of the processes and parameters that comprise and contribute to evaporation.This book emphasizes the process of the air-water interface and discusses such important topics as evaporation and condensation coefficients of water, heat and mass transfer, surface temperature, interfacial tension, convection, diffusion, thermal gradients, wind-generated waves, and the roles that these processes play in evaporation. The book also discusses subjects such as methods for suppressing evaporation using films, water vapor distribution, wind tunnel investigations, evaporation from water drops, preparation of pure water, molecular diffusion, the eddy-correlation method, and evaporation estimation methods. The book will be of considerable value to hydrologists, irrigation specialists, meteorologists, civil engineers, chemical engineers, hydraulic engineers, water resources specialists, water conservation specialists, geophysicists, environmental engineers, and anyone interested in understanding the evaporation of water and its consequences.

Estimating Steady-state Evaporation Rates from Bare Soils Under Conditions of High Water Table

Estimating Steady-state Evaporation Rates from Bare Soils Under Conditions of High Water Table PDF Author: C. D. Ripple
Publisher:
ISBN:
Category : Evaporation (Meteorology)
Languages : en
Pages : 52

Book Description


Soil Water Measurement

Soil Water Measurement PDF Author: J. David Cooper
Publisher: John Wiley & Sons
ISBN: 1119106028
Category : Science
Languages : en
Pages : 368

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.

A New Calculation Procedure and Simple Set-up for the Evaporation Method to Determine Soil Hydraulic Functions

A New Calculation Procedure and Simple Set-up for the Evaporation Method to Determine Soil Hydraulic Functions PDF Author: Johannes Michael Halbertsma
Publisher:
ISBN:
Category :
Languages : en
Pages : 25

Book Description


Methods of Soil Analysis

Methods of Soil Analysis PDF Author: Charles Allen Black
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 844

Book Description
Part 1: Physical and mineralogical properties, including statistics of measurement and sampling. Part 2: Chemical and microbiological properties.