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Bioresource and Agricultural Engineering Commons™
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Articles 211 - 240 of 351
Full-Text Articles in Bioresource and Agricultural Engineering
Volumetric Irrigation Water Pricing Considerations, Charles M. Burt
Volumetric Irrigation Water Pricing Considerations, Charles M. Burt
BioResource and Agricultural Engineering
Volumetric water pricing is a popular topic within donor agencies for irrigation project modernization and sustainability. Implementation of an effective pricing program is quite complex and requires consideration of physical modernization, fee structure, enforcement procedures, and the level of water delivery service. Variations of volumetric water pricing and allocation are discussed.
Flexible Irrigation Systems: Concept, Design And Application, John L. Merriam, Stuart W. Styles, Beau J. Freeman
Flexible Irrigation Systems: Concept, Design And Application, John L. Merriam, Stuart W. Styles, Beau J. Freeman
BioResource and Agricultural Engineering
This paper presents the need, value, and concept of flexible irrigation water supply systems that can deliver water with flexibility in frequency, rate, and duration under the control of the farmer at the point of application using a limited rate arranged-demand or other schedule. It introduces the needed terminology including “congestion” — how much reserve time and capacity is required to assure water delivery at the frequency and rate desired. An illustrative design procedure for the necessary pipeline and reservoir capacities is illustrated. The techniques discussed emphasize the conversion of the economical steady supply canal flows to flexible on-farm usage …
Flap Gate, Charles M. Burt
Flap Gate, Charles M. Burt
BioResource and Agricultural Engineering
ITRC began to investigate early designs of Flap Gates in 1992. The gates originated in The Netherlands in the 1940s, but no design criteria were available. ITRC developed an Excel design program that uses a combination of theory and coefficients from field results – and has continued to improve the program almost every year. District staff at Turlock ID and Chowchilla WD provided valuable feedback with early models. This report includes information on design, installation, maintenance, water conservation and efficiency, cost, use, and benefits.
ITRC Flap Gates are typically used with a concrete counterweight in situations where the gates are …
General Irrigation Consumer Bill Of Rights, Charles M. Burt
General Irrigation Consumer Bill Of Rights, Charles M. Burt
BioResource and Agricultural Engineering
Cal Poly ITRC, together with various irrigation industry leaders and the Irrigation Dealers Association of California, plus with assistance from the California Energy Commission and Pacific Gas & Electric Co., developed the Irrigation Consumer Bill of Rights (ICBR) in 1994.
Volumetric Water Pricing, Charles M. Burt
Volumetric Water Pricing, Charles M. Burt
BioResource and Agricultural Engineering
This document discusses the concept of volumetric pricing for irrigation water, including:
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The justification for paying volumetrically
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The challenge of charging volumetrically
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Characteristics of volumetric charges and influencing factors
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Examples of irrigation projects with volumetric charges
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A summary of necessary conditions for volumetric billing
Monitoring And Evaluation (M&E) Of Capacity Development For Irrigation Modernization, Charles M. Burt
Monitoring And Evaluation (M&E) Of Capacity Development For Irrigation Modernization, Charles M. Burt
BioResource and Agricultural Engineering
Effective capacity development monitoring and evaluation (M&E) depends first upon targeted capacity development programs, with well-defined and attainable objectives that can be evaluated after completion of the program. This paper focuses on capacity development related to technical issues of irrigation modernization.
ITRC performs diagnostic research on irrigation projects and field irrigation systems in advance of developing targeted capacity development programs. If the capacity development is appropriate, and if it is targeted in both content and to specific audiences, one can expect an eventual improvement in post-capacity-building performance. ITRC has found that the improvements are incremental, and often require substantial changes …
Surface Drip Tape Irrigation Systems As An Alternative To Sdi For Field And Row Crops, Charles M. Burt
Surface Drip Tape Irrigation Systems As An Alternative To Sdi For Field And Row Crops, Charles M. Burt
BioResource and Agricultural Engineering
In recent years, new equipment and techniques developed by farmers and private industry have improved the suitability of surface drip tape as an alternative to subsurface drip irrigation (SDI) for field crops and vegetable crops in highly mechanized farming. Retrievable drip tape systems now lack many of the disadvantages of SDI, yet provide the advantages typically expected from drip irrigation. Tape retrieval practices have now reached well beyond the theoretical realm to the point that they dominate drip systems for cauliflower, lettuce, celery, and broccoli on the Central Coast of California. It is expected that drip design and practices will …
Non-Standard Structure Flow Measurement Evaluation Using The Flow Rate Indexing Procedure - Qip, Stuart W. Styles, Bryan Busch, Daniel J. Howes, Marcus Cardenas
Non-Standard Structure Flow Measurement Evaluation Using The Flow Rate Indexing Procedure - Qip, Stuart W. Styles, Bryan Busch, Daniel J. Howes, Marcus Cardenas
BioResource and Agricultural Engineering
This report details the proper installation and calibration techniques for hydroacoustic meters. The calibration procedure developed as part of this study is called the Flow Rate Indexing Procedure (QIP). The QIP can be competed by a professional technician with a boat-mounted Acoustic Doppler Profiler (ADP) or a standard current meter. Once the QIP has been used to properly calibrate a hydroacoustic flow meter, the device can then measure and record the flow rate and volume in a channel to within +/- 6% of actual values.
Simulated Performances Of A Heat Pump System For Energy And Water Conservation In Open And Confined Greenhouse Systems, Ilhami Yildiz, D. P. Stombaugh
Simulated Performances Of A Heat Pump System For Energy And Water Conservation In Open And Confined Greenhouse Systems, Ilhami Yildiz, D. P. Stombaugh
BioResource and Agricultural Engineering
The purpose of this study was to determine and compare the performances of conventional and heat pump systems for energy and water conservation in open and confined greenhouse systems. Conventional gas furnaces and evaporative cooling, respectively, provided heating and cooling in the conventional system. In the heat pump systems, gas-fired heat pump units provided both heating and cooling. The greenhouse with heat pump units also had an option to be operated as a completely confined system, using one of the heat pump units as a dehumidifier. Average energy consumption in winter was 56.9, 23.5, and 11.3 MJ/day.m² in the conventional, …
Dynamic Modeling Of Microclimate And Environmental Control Strategies In A Greenhouse Coupled With A Heat Pump System, Ilhami Yildiz, D. P. Stombaugh
Dynamic Modeling Of Microclimate And Environmental Control Strategies In A Greenhouse Coupled With A Heat Pump System, Ilhami Yildiz, D. P. Stombaugh
BioResource and Agricultural Engineering
The purpose of this study was to develop and validate a dynamic simulation model to be employed in accurate prediction of microclimate in a greenhouse as a function of dynamic environmental factors. The model has options to evaluate the effects of location, time of the year, orientation, single and double polyethylene glazings, conventional and heat pump heating and cooling systems, open and confined greenhouse systems, CO2 enrichment, variable shading, and the use of night curtains. Conventional gas furnace and evaporative cooling, respectively, provided heating and cooling in the conventional system. In the heat pump systems, gas-fired heat pump units …
Heat Pump Cooling And Greenhouse Microclimates In Open And Confined Greenhouse Systems, Ilhami Yildiz, D. P. Stombaugh
Heat Pump Cooling And Greenhouse Microclimates In Open And Confined Greenhouse Systems, Ilhami Yildiz, D. P. Stombaugh
BioResource and Agricultural Engineering
The purpose of this study was to determine and compare the performances of conventional and heat pump systems for cooling open and closed loop (confined) greenhouse systems. A dynamic simulation model was developed and validated to predict energy and mass exchanges in a greenhouse as a function of dynamic environmental factors. The model has options to evaluate the effects of location, time of the year, orientation, single and double polyethylene glazings, conventional and heat pump heating and cooling systems, CO2 enrichment, ventilation, variable shading, and the use of night curtains in open and confined greenhouse environments. Variable shading, ventilation …
Leaching Of Accumulated Soil Salinity Under Drip Irrigation, Charles M. Burt, Brett Isbell
Leaching Of Accumulated Soil Salinity Under Drip Irrigation, Charles M. Burt, Brett Isbell
BioResource and Agricultural Engineering
Conducted a reclamation leaching experiment in a drip-irrigated pistachio orchard south of Huron, California, during the winter of 2002-2003. The study was conducted to quantify the leaching water required to remove salts from the effective root zone of trees. This experiment tested a new reclamation leaching technique: multiple lines of low-flow drip tape were used to apply water to the area of salinity accumulation along a tree row. This new technique allows water to be applied where there is salt accumulation along the tree row, as opposed to putting water on the entire area of the field. Since reclamation leaching …
Non-Standard Structure Flow Measurement Evaluation Using The Flow Rate Indexing Procedure – Qip, Stuart Styles
Non-Standard Structure Flow Measurement Evaluation Using The Flow Rate Indexing Procedure – Qip, Stuart Styles
BioResource and Agricultural Engineering
This paper summarizes the results of a performance evaluation using advanced hydroacoustic rating techniques in irrigation canal systems. Standardized field-tested procedures and technical specifications for index velocity ratings have been developed for rating measurement locations using hydroacoustic flow meters. Water managers and users of advanced electronic flow measuring devices can improve the cost effectiveness, accuracy, and quality control of discharge records, even at sites with complex flow conditions, by observing these recommended guidelines.
Non-Standard Structure Flow Measurement Evaluation Using The Flow Rate Indexing Procedure - Qip, Stuart W. Styles
Non-Standard Structure Flow Measurement Evaluation Using The Flow Rate Indexing Procedure - Qip, Stuart W. Styles
BioResource and Agricultural Engineering
This paper summarizes the results of a performance evaluation using advanced hydroacoustic rating techniques in irrigation canal systems. Standardized field-tested procedures and technical specifications for index velocity ratings have been developed for rating measurement locations using hydroacoustic flow meters. Water managers and users of advanced electronic flow measuring devices can improve the cost effectiveness, accuracy, and quality control of discharge records, even at sites with complex flow conditions, by observing these recommended guidelines.
California Energy Commission: Estimated Energy Requirements Under Drought Conditions, Charles M. Burt, Daniel J. Howes
California Energy Commission: Estimated Energy Requirements Under Drought Conditions, Charles M. Burt, Daniel J. Howes
BioResource and Agricultural Engineering
This study is a continuation of a previous study conducted by ITRC for the CEC summarized in a report titled California Agricultural Water Energy Requirements (ITRC Report No. 03-006), which focused on determining a baseline energy requirement for agricultural sectors as well as analyzing potential future trends in the agricultural water community to predict future energy requirements. This study utilized the data and model developed in the previous analysis in order to quantify the impact of drought conditions on energy requirements of the agricultural water sector.
Multiple-Model Optimization Of Proportional Integral Controllers On Canals, P. J. Van Overloop, J. Schuurmans, R. Brouwer, Charles M. Burt
Multiple-Model Optimization Of Proportional Integral Controllers On Canals, P. J. Van Overloop, J. Schuurmans, R. Brouwer, Charles M. Burt
BioResource and Agricultural Engineering
Canals or open channels that convey water often consist of pools in series separated by control structures. Successful implementation of water-level control with these structures using decentralized proportional integral (PI) controllers depends heavily on the tuning of the control parameters. These parameters are hard to determine due to the interactions between the pools and the varying flow conditions in the canal. This paper presents a procedure for tuning any linear controller (including decentralized PI controllers) that guarantees stability of the controlled canal. It minimizes a cost function that weights the water-level deviations from the target level against control efforts at …
Cec Agricultural Peak Load Reduction Program - Water Agencies Final Report, Charles M. Burt, Daniel J. Howes
Cec Agricultural Peak Load Reduction Program - Water Agencies Final Report, Charles M. Burt, Daniel J. Howes
BioResource and Agricultural Engineering
During the winter of 2000-2001, California experienced a severe imbalance in electricity supply and demand that resulted in blackouts and brownouts. The state legislature initiated a number of emergency programs, one of which was Senate Bill 5x. The primary goal of SB 5x is to reduce peak period electric demand throughout California. The California Energy Commission (CEC), acting under authority of Section 5(b) of the legislation, developed the “Agricultural Peak Load Demand Program”. The program was funded in early June 2001, and the Irrigation Training and Research Center (ITRC) of California Polytechnic State University (Cal Poly), San Luis Obispo was …
California Energy Commission Agricultural Peak Load Reduction Program Case Study: Berrenda Mesa Wsd, Charles M. Burt, Daniel J. Howes
California Energy Commission Agricultural Peak Load Reduction Program Case Study: Berrenda Mesa Wsd, Charles M. Burt, Daniel J. Howes
BioResource and Agricultural Engineering
Berrenda Mesa Water Storage District (BMWSD) is located in the southern part of the San Joaquin Valley near Bakersfield. The district receives water from the State Water Project – California Aqueduct.
California Energy Commission Agricultural Peak Load Reduction Program Case Study: Kaweah River Power Authority And Tulare Id, Charles M. Burt
California Energy Commission Agricultural Peak Load Reduction Program Case Study: Kaweah River Power Authority And Tulare Id, Charles M. Burt
BioResource and Agricultural Engineering
Tulare Irrigation District (TID) is located on the east side of the Central San Joaquin Valley just south of Visalia, CA. The district receives water from Lake Kaweah through Terminus Dam as well as from the Friant-Kern Canal. TID is the single largest partner in the Kaweah River Power Authority (KRPA), which operates Terminus Dam and regulates the discharge from Lake Kaweah.
Comparison Of Measured And Fao-56 Modeled Evaporation From Bare Soil, Andrew J. Mutziger, Charles M. Burt, Daniel J. Howes, Richard G. Allen
Comparison Of Measured And Fao-56 Modeled Evaporation From Bare Soil, Andrew J. Mutziger, Charles M. Burt, Daniel J. Howes, Richard G. Allen
BioResource and Agricultural Engineering
This paper evaluates how well the FAO-56 style soil water evaporation model simulates measurements of evaporation (E) from bare soil. Seven data sets were identified from the literature and in all but one case, the individuals who took the measurements were contacted and they provided the writers with specific weather and soils data for model input. Missing weather and soils data were obtained from online sources or from the National Climatic Data Center. Simulations for three possible variations of soil data were completed and compared. The measured and the FAO-56 simulated E/ETo and cumulative evaporation trends and …
Evaporation Research: Review And Interpretation, Charles M. Burt, Andrew J. Mutziger, Robert G. Allen, Terry A. Howell
Evaporation Research: Review And Interpretation, Charles M. Burt, Andrew J. Mutziger, Robert G. Allen, Terry A. Howell
BioResource and Agricultural Engineering
Literature regarding evaporation from soil, wet plant surfaces, and sprinkler droplets was examined, normalized, and interpreted. Much of the evaporation literature is difficult to compare and interpret; this paper offers comparisons and discussions of various findings by others as well as by the writers. Techniques of measuring and estimating evaporation from irrigation and rainfall are discussed. The partitioning between increased evaporation and decreased transpiration from a variety of research is quantified. Factors that impact the various forms of evaporation are listed and quantified. This review and summary will provide practitioners and researchers with theoretical and practical guidance on measurement techniques …
Prediction Accuracy For Projectwide Evapotranspiration Using Crop Coefficients And Reference Evapotranspiration, Richard G. Allen, Albert J. Clemmens, Charles M. Burt, Ken Solomon, Tim O'Halloran
Prediction Accuracy For Projectwide Evapotranspiration Using Crop Coefficients And Reference Evapotranspiration, Richard G. Allen, Albert J. Clemmens, Charles M. Burt, Ken Solomon, Tim O'Halloran
BioResource and Agricultural Engineering
The Imperial Irrigation District is a large irrigation project in the western United States having a unique hydrogeologic structure such that only small amounts of deep percolation leave the project directly as subsurface flows. This structure is conducive to relatively accurate application of a surface water balance to the district, enabling the determination of crop evapotranspiration (ETc) as a residual of inflows and outflows. The ability to calculate ETc from discharge measurements provides the opportunity to assess the accuracy and consistency of an independently applied crop coefficient—reference evapotranspiration (Kc ET0) procedure integrated over …
Canal Flow Rate Measurement Guidelines – Itrc 2005: Hydroacoustic Meters, Charles M. Burt, Stuart Styles
Canal Flow Rate Measurement Guidelines – Itrc 2005: Hydroacoustic Meters, Charles M. Burt, Stuart Styles
BioResource and Agricultural Engineering
A Hydroacoustic flow meter provides remote velocity sampling and integrated flow measurement based on the physical principle called the Doppler shift. The sensors can either project a continuous or pulsed beam of acoustic signals at angles above the horizontal position of the sensor. Flow velocity is calculated by averaging the measured variations in sound frequency reflected back from particles in the water. Depth is measured with a ceramic-based pressure transducer integrally mounted in a surface mount velocity sensor and the device calculates the flow rate.
California Energy Commission Agricultural Peak Load Reduction Program Case Study: North Kern Wsd, Charles M. Burt, Daniel J. Howes
California Energy Commission Agricultural Peak Load Reduction Program Case Study: North Kern Wsd, Charles M. Burt, Daniel J. Howes
BioResource and Agricultural Engineering
The North Kern Water Storage District (NKWSD) is located just north of Bakersfield in Kern County and encompasses nearly 60,000 acres. The district receives water from the Kern River as well as groundwater pumping to supply its users.
California Energy Commission Agricultural Peak Load Reduction Program Case Study: Orange Cove Id, Charles M. Burt, Daniel J. Howes
California Energy Commission Agricultural Peak Load Reduction Program Case Study: Orange Cove Id, Charles M. Burt, Daniel J. Howes
BioResource and Agricultural Engineering
The Orange Cove Irrigation District is located in Fresno and Tulare Counties, approximately 30 miles southeast of Fresno and 20 miles north of the City of Visalia. The Friant-Kern Canal is the district’s main source of water to supply 28,000 acres of farmland.
Rapid Field Evaluation Of Drip And Microspray Distribution Uniformity, Charles M. Burt
Rapid Field Evaluation Of Drip And Microspray Distribution Uniformity, Charles M. Burt
BioResource and Agricultural Engineering
The Cal Poly ITRC irrigation evaluation programs have been widely used to assess the global distribution uniformity (DU) of drip and microsprayer irrigation systems. The field procedures and formulas used in the program are presented in this paper. The system DU is estimated by mathematically combining the component DU values. DU components include pressure differences, "other causes" (such as manufacturing variation, plugging, and wear), unequal drainage, and unequal application rates. Results are presented from evaluations by several entities, including Cal Poly ITRC. Cal Poly evaluations of 329 fields provided an average DUlq of 0.85 for drip and 0.80 for …
Irrigation District Observations On Large Diameter, Low Pressure Pipeline Materials, Charles M. Burt
Irrigation District Observations On Large Diameter, Low Pressure Pipeline Materials, Charles M. Burt
BioResource and Agricultural Engineering
There are approximately 1,400 miles of low pressure non-reinforced cast-in-place ("monolithic" or "CIP") concrete pipe in California irrigation districts. Cast-in-place pipe was irrigation districts’ material of choice for large diameter pipelines from 1930 to at least 1980. Many of these pipelines were installed in the early 1900’s. They are predominately found on the east side of the San Joaquin Valley, from Manteca in the north to Visalia in the south. Most of these pipes are deteriorating and will need to be replaced within the next 10-20 years.
Irrigation districts have attempted to find new ways to repair these pipes. However, …
Benchmarking Of Flexibility And Needs - 2004, Charles Burt, Dan Howes, Franklin Gaudi, Monica Holman
Benchmarking Of Flexibility And Needs - 2004, Charles Burt, Dan Howes, Franklin Gaudi, Monica Holman
BioResource and Agricultural Engineering
ITRC interviewed irrigation district personnel from 25 agricultural districts in eastern Washington, northern Idaho and western Montana.
Data were analyzed to determine the degree of water delivery flexibility provided to farmers and the extent of existing and planned district modernization. This is the fourth such report the Irrigation Training and Research Center (ITRC) has published for irrigation districts in the western US. The first two evaluations were conducted on behalf of the Mid-Pacific Region of the US Bureau of Reclamation (USBR) and included California irrigation districts that had long-term federal contracts. The third report was prepared on behalf of the …
Water Level Sensor Testing Summary, Stuart Styles, Sarah Herman, Marcus Yasutake, Chuck Keezer
Water Level Sensor Testing Summary, Stuart Styles, Sarah Herman, Marcus Yasutake, Chuck Keezer
BioResource and Agricultural Engineering
The findings presented here are the continuation of a series of studies begun in 1998 by the Irrigation Training and Research Center (ITRC) at California Polytechnic State University (Cal Poly), San Luis Obispo, California, on behalf of the Mid-Pacific Region of the United States Bureau of Reclamation (USBR) to test water level sensors under a variety of hydraulic conditions.
The goals for the original project were to determine the best way to monitor water level, and to develop a fast method for appraising sensors considered for irrigation district applications. This research addresses the need for water level sensors that are …
California Agricultural Water Electrical Energy Requirements, Charles M. Burt, Daniel J. Howes, Gary Wilson
California Agricultural Water Electrical Energy Requirements, Charles M. Burt, Daniel J. Howes, Gary Wilson
BioResource and Agricultural Engineering
The Irrigation Training and Research Center, working under agreement with the California Energy Commission as part of its Public Interest Energy Research Program, conducted an analysis of the energy used to supply water to California's agriculture and examined potential future trends in the agriculture water community to predict future energy requirements.