A gas network model has been constructed based on the steady-state Weymouth equation. A fast and robust solution algorithm is proposed and subsequently used to calculate all flows and pressures in a gas network with over 40,000 pipes. The obtained result is mathematically accurate within 0.1% and has been obtained within 0.2 seconds. Using basic physical principles, a simple gas consumption model has been constructed to feed the gas network model with necessary input data. A method has been developed for minimizing leaks in gas distribution networks by changing the network operating pressure. This strategy has the potential to reduce gas leakage with over 40% as concluded from two case studies
Natural gas supply systems are complex pipeline networks, whose features can cause severe consequenc...
We develop an effective Mixed Integer Non-Linear Programming model to design the natural gas distrib...
A potential problem in natural gas pipeline networks is bottlenecks occurring in the flow system due...
Natural gas networks are critical lifelines essential to the continued well-being of a community. Wh...
The continuous uninterrupted supply of Natural Gas (NG) is crucial to today's economy, with issues i...
The continuous uninterrupted supply of Natural Gas (NG) is crucial to today’s economy, with is...
The continuous uninterrupted supply of Natural Gas (NG) is crucial to today\u27s economy, with issue...
Natural gas is normally transported through a vast network of pipelines. A pipeline network is gener...
Accent is on determination of appropriate friction factor, and on selection of representative equati...
International audienceAccent is on determination of appropriate friction factor, and on selection of...
A potential problem in natural gas pipeline networks is bottlenecks occurring in the flow system due...
Natural gas supply systems are complex pipeline networks, whose features can cause severe consequenc...
A potential problem in natural gas pipeline networks is bottlenecks occurring in the flow system due...
A potential problem in natural gas pipeline networks is bottlenecks occurring in the flow system due...
A potential problem in natural gas pipeline networks is bottlenecks occurring in the flow system due...
Natural gas supply systems are complex pipeline networks, whose features can cause severe consequenc...
We develop an effective Mixed Integer Non-Linear Programming model to design the natural gas distrib...
A potential problem in natural gas pipeline networks is bottlenecks occurring in the flow system due...
Natural gas networks are critical lifelines essential to the continued well-being of a community. Wh...
The continuous uninterrupted supply of Natural Gas (NG) is crucial to today's economy, with issues i...
The continuous uninterrupted supply of Natural Gas (NG) is crucial to today’s economy, with is...
The continuous uninterrupted supply of Natural Gas (NG) is crucial to today\u27s economy, with issue...
Natural gas is normally transported through a vast network of pipelines. A pipeline network is gener...
Accent is on determination of appropriate friction factor, and on selection of representative equati...
International audienceAccent is on determination of appropriate friction factor, and on selection of...
A potential problem in natural gas pipeline networks is bottlenecks occurring in the flow system due...
Natural gas supply systems are complex pipeline networks, whose features can cause severe consequenc...
A potential problem in natural gas pipeline networks is bottlenecks occurring in the flow system due...
A potential problem in natural gas pipeline networks is bottlenecks occurring in the flow system due...
A potential problem in natural gas pipeline networks is bottlenecks occurring in the flow system due...
Natural gas supply systems are complex pipeline networks, whose features can cause severe consequenc...
We develop an effective Mixed Integer Non-Linear Programming model to design the natural gas distrib...
A potential problem in natural gas pipeline networks is bottlenecks occurring in the flow system due...