Non-pressure compensating drip hose is widely used for irrigation of vegetables and orchards. One limitation is that the lateral line length must be short to maintain uniformity due to head loss and slope. Any procedure to increase the length is appropriate because it represents low initial cost of the irrigation system. The hypothesis of this research is that it is possible to increase the lateral line length combining two points: using a larger spacing between emitters at the beginning of the lateral line and a smaller one after a certain distance; and allowing a higher pressure variation along the lateral line under an acceptable value of distribution uniformity. To evaluate this hypothesis, a nonlinear programming model (NLP) was develo...
WOS: 000245890600018This paper presents models developed to predict friction head losses in drip irr...
Bu çalısmada, ülkemizde yaygın olarak kullanılan in-line damlatıcıya sahip dairesel kesitli, damla ...
This paper presents models developed to predict friction head losses in drip irrigation laterals. So...
Aims: The hypothesis of this research is that it is possible to increase the drip irrigation lateral...
The use of non-pressure compensating drip hose in horticultural and annual cycle fruits is growing i...
Accurate hydraulic design of laterals is one of the most important factors for ensuring water distri...
An appropriate design of a drip irrigation system in order to increase the uniformity of water distr...
Knowledge of the maximum length for paired drip laterals facilitates the economic optimization of mi...
An appropriate design of a drip irrigation system in order to increase the uniformity of water distr...
It is known that using paired laterals, in which two distribution pipes extend in opposite direction...
Microirrigation plants, if properly designed, allow for water use efficiency to be optimized and hig...
In drip irrigation systems the lateral lines are the pipes on which the emitters are installed. The ...
A simple, direct, and easily adaptable analytical approach was developed for determining the length ...
The Darcy-Weisbach equation is considered one of the most suitable equations to estimate pressure dr...
The objectives of the work were to study the effect of drip irrigation circuits (DIC) and lateral li...
WOS: 000245890600018This paper presents models developed to predict friction head losses in drip irr...
Bu çalısmada, ülkemizde yaygın olarak kullanılan in-line damlatıcıya sahip dairesel kesitli, damla ...
This paper presents models developed to predict friction head losses in drip irrigation laterals. So...
Aims: The hypothesis of this research is that it is possible to increase the drip irrigation lateral...
The use of non-pressure compensating drip hose in horticultural and annual cycle fruits is growing i...
Accurate hydraulic design of laterals is one of the most important factors for ensuring water distri...
An appropriate design of a drip irrigation system in order to increase the uniformity of water distr...
Knowledge of the maximum length for paired drip laterals facilitates the economic optimization of mi...
An appropriate design of a drip irrigation system in order to increase the uniformity of water distr...
It is known that using paired laterals, in which two distribution pipes extend in opposite direction...
Microirrigation plants, if properly designed, allow for water use efficiency to be optimized and hig...
In drip irrigation systems the lateral lines are the pipes on which the emitters are installed. The ...
A simple, direct, and easily adaptable analytical approach was developed for determining the length ...
The Darcy-Weisbach equation is considered one of the most suitable equations to estimate pressure dr...
The objectives of the work were to study the effect of drip irrigation circuits (DIC) and lateral li...
WOS: 000245890600018This paper presents models developed to predict friction head losses in drip irr...
Bu çalısmada, ülkemizde yaygın olarak kullanılan in-line damlatıcıya sahip dairesel kesitli, damla ...
This paper presents models developed to predict friction head losses in drip irrigation laterals. So...