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A Mathematical Model for Pressure Compensating Emitters
Katherine A. Taylor
, Pulkit Shamshery
, Ruo-Qian Wang
, Amos G. Winter V
Civil Engineering
Research output
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Chapter in Book/Report/Conference proceeding
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Keyphrases
Mathematical Model
100%
Pressure-compensating Emitter
100%
Pressure Compensating
100%
Compensating Behavior
80%
Drip Irrigation
60%
Driving Pressure
40%
2D Model
20%
Fluid Flow
20%
Energy Demand
20%
Water Table
20%
Water Scarcity
20%
Developing World
20%
High Cost
20%
Poverty
20%
Geometric Parameters
20%
Commercially Available
20%
Irrigation
20%
Material Parameters
20%
Pumping Power
20%
Design Change
20%
Economically Viable
20%
Adoption Rate
20%
Lack of Access
20%
Structural Deformation
20%
Increased Yield
20%
Low Adoption
20%
Drip Irrigation Emitter
20%
Solar Power System
20%
Electrical Grid
20%
Smallholder Farmers
20%
Low Activation
20%
Deformation Flow
20%
Engineering
Mathematical Model
100%
Parametric Study
33%
Fluid Flow
33%
Material Parameter
33%
Design Change
33%
Geometric Parameter
33%
Main Reason
33%
Electrical Grid
33%
Pumping Power
33%
Developing Country
33%
Material Science
Fluid Flow
100%
Chemical Engineering
Fluid Flow
100%