Javascript must be enabled to continue!
Structural Vulnerability Analysis of Interdependent Electric Power and Natural Gas Systems
View through CrossRef
The growing use of gas-fired power generators and electricity-driven gas compressors and storage has increased the interdependence between electric power infrastructure and natural gas infrastructure. However, the increasing interdependence may spread the failures from one system to the other, causing subsequent failures in an integrated power and gas system (IPGS). This paper investigates the structural vulnerability of a realistic IPGS based on complex network theory. Different from the existing works with a focus on the static vulnerability analysis for an IPGS, this paper considers both static and dynamic vulnerability analysis. The former focuses on vulnerability analysis under random and selective failures without flow redistribution, while the latter concentrates on vulnerability analysis under cascading failures caused by flow redistribution. Also, different from the existing works with a focus on the IPGS as a whole, we not only analyze the vulnerability of the IPGS but also analyze the vulnerability of the power subsystem (PS) and gas subsystem (GS), in order to understand how the vulnerability of the IPGS is affected by its PS and GS. The analysis results show that (1) if the PS and GS are more susceptible to cascading failures than selective and random failures, the IPGS as a whole is also more vulnerable to cascading failures. (2) There are different dominant factors affecting the IPGS vulnerability under cascading failures and selective failures. Under cascading failures, the GS has a more significant impact on the IPGS vulnerability; under selective failures, the PS has a more important impact on the IPGS vulnerability. (3) The IPGS is more vulnerable to failures on the critical nodes, which are identified from the IPGS as a whole rather than from the individual PS or GS. The results provide insights into the design and planning of IPGSs to improve their overall reliability.
Title: Structural Vulnerability Analysis of Interdependent Electric Power and Natural Gas Systems
Description:
The growing use of gas-fired power generators and electricity-driven gas compressors and storage has increased the interdependence between electric power infrastructure and natural gas infrastructure.
However, the increasing interdependence may spread the failures from one system to the other, causing subsequent failures in an integrated power and gas system (IPGS).
This paper investigates the structural vulnerability of a realistic IPGS based on complex network theory.
Different from the existing works with a focus on the static vulnerability analysis for an IPGS, this paper considers both static and dynamic vulnerability analysis.
The former focuses on vulnerability analysis under random and selective failures without flow redistribution, while the latter concentrates on vulnerability analysis under cascading failures caused by flow redistribution.
Also, different from the existing works with a focus on the IPGS as a whole, we not only analyze the vulnerability of the IPGS but also analyze the vulnerability of the power subsystem (PS) and gas subsystem (GS), in order to understand how the vulnerability of the IPGS is affected by its PS and GS.
The analysis results show that (1) if the PS and GS are more susceptible to cascading failures than selective and random failures, the IPGS as a whole is also more vulnerable to cascading failures.
(2) There are different dominant factors affecting the IPGS vulnerability under cascading failures and selective failures.
Under cascading failures, the GS has a more significant impact on the IPGS vulnerability; under selective failures, the PS has a more important impact on the IPGS vulnerability.
(3) The IPGS is more vulnerable to failures on the critical nodes, which are identified from the IPGS as a whole rather than from the individual PS or GS.
The results provide insights into the design and planning of IPGSs to improve their overall reliability.
Related Results
Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
The springing up of freeform architecture and structures introduces many challenges to structural engineers. The main challenge is to generate structural forms with high structural...
Technology Focus: Natural Gas Processing and Handling (April 2021)
Technology Focus: Natural Gas Processing and Handling (April 2021)
In 2020, the spot prices of natural gas hit a record low in the US, reaching the lowest annual average price in more than a decade. Based on US Energy Information Administration (E...
Enhanced Gas Recovery: Prospects And Technology
Enhanced Gas Recovery: Prospects And Technology
Abstract
As the supply of gas from conventional sources is depleted, the prospect of gas from unconventional resources will become attractive. These sources inclu...
Manager Of Supply Planning And Projects
Manager Of Supply Planning And Projects
Abstract
The Southern California Gas Company is responsible for providing gas service to 12 million southern Californians. SoCal Gas, like other major gas distrib...
Improved Gas-In-Place Determination for Coal Gas Reservoirs
Improved Gas-In-Place Determination for Coal Gas Reservoirs
Abstract
The Upper Cretaceous Fruitland Formation of the San Juan Basin of Colorado and New Mexico has been a very active natural gas play in recent years. Case...
RESOURCE-SAVING CHARGING SYSTEMS OF ELECTRIC VEHICLES WITH ELECTRIC DRIVES IN URBAN POWER NETWORKS
RESOURCE-SAVING CHARGING SYSTEMS OF ELECTRIC VEHICLES WITH ELECTRIC DRIVES IN URBAN POWER NETWORKS
Today, almost the entire world is experiencing the so-called transport revolution associated with the widespread
market introduction and use of both hybrid vehicles and electric ve...
Next steps in capturing vulnerability dynamics: Introducing a connectivity-based model on systemic vulnerability to multi-hazards
Next steps in capturing vulnerability dynamics: Introducing a connectivity-based model on systemic vulnerability to multi-hazards
Vulnerability has been acknowledged as a dynamic concept since the Pressure and Release model of Blaikie et al. (1994), as well as by other well-known models that integrate this ri...
REGULATORY PROVISION OF SAFETY OF GAS TRANSPORT. CONSTRUKTIONAL DESIGN OF MOBILE COMPRESSOR STATIONS
REGULATORY PROVISION OF SAFETY OF GAS TRANSPORT. CONSTRUKTIONAL DESIGN OF MOBILE COMPRESSOR STATIONS
Problem statement. The basis for the safety and efficiency of the main gas transportation in the world is the tightness of the gas transportation system. A component of the level o...

