Abstract:
Disclosed are methods and a system of sensor-based smart unlocking of a firefighter air replenishment system. A safety system of an occupiable structure includes a breathable-air supply system to facilitate delivery of breathable air from a source of compressed air, and a fill station in a fire-rated evacuation area of the occupiable structure to supply the breathable air to an emergency personnel. The safety system also includes a smart lock associated with the breathable-air supply system to automatically unlock one or more location(s) of the breathable-air supply system usable by the emergency personnel to access the breathable air during an emergency state of the occupiable structure, and a sensor associated with the breathable-air supply system to detect the emergency state of the occupiable structure.
Abstract:
Disclosed are methods and a safety system of a structure for an air parameter based automatic purging of breathable air within the safety system. In accordance therewith, an air analysis device is coupled within the safety system along an air flow path of the breathable air from the source thereof. The safety system has a fixed piping system installed within the structure for supply of the breathable air across the safety system. A sensor associated with the air analysis device senses a parameter of the breathable air within the safety system. In response to an alert signal indicative of the sensed parameter of the breathable air being outside a predetermined threshold value, a valve and/or a vacuum pump within the safety system automatically purges the safety system of at least a portion of the breathable air.
Abstract:
Disclosed are methods and a safety system of a structure for automatic switching between sources of breathable air within the safety system in accordance with air parameter based automatic purging of a compromised form thereof. The safety system has a fixed piping system installed within the structure for supply of the breathable air from a source across the safety system. In response to an alert signal indicative of a sensed parameter of the breathable air being outside a predetermined threshold value, a breathable air purging system within the safety system automatically purges the safety system of the breathable air, and a bypass controller device automatically switches to another source of the breathable air to ensure a continued supply of the breathable air via the fixed piping system of the safety system.
Abstract:
Disclosed are a method, a device and a system of access control and management of one or more component(s) of a safety system related to access of breathable air supplied across the safety system. Based on execution of a computing platform on a data processing device, the computing platform is integrated with one or more sensor(s) associated with the one or more component(s). In accordance with the integration of the computing platform with the one or more sensor(s), the data processing device controls access of the one or more component(s), and captures, in conjunction with the one or more sensor(s), one or more parameter(s) of the access of the one or more component(s) based on the control of the access.
Abstract:
Disclosed are a method and systems of remote monitoring of a sensor integrated safety system of a structure through a mobile data processing device. In accordance therewith, the mobile data processing device executes a component of a computing platform for the sensor integration therethrough. The mobile data processing device executing the component of the computing platform monitors the safety system and/or one or more components of a number of components thereof remotely based on collecting a number of parameters of the number of components of the safety system and/or of access thereof through detection of the number of parameters via a set of sensors associated with the number of components of the safety system. The number of parameters includes one or more parameter(s) related to breathable air from a source within the safety system supplied thereacross via a fixed piping system implemented therein and/or access of the breathable air.
Abstract:
Disclosed are a method, a device and a system of a sensor integrated safety system based computing platform. The computing platform is executed on a data processing device and integrated with a set of sensors associated with components of a safety system In accordance therewith, the data processing device collects a number of parameters of the components of the safety system and/or of access thereof through detection of the number of parameters via the set of sensors. The number of parameters includes one or more parameter(s) related to breathable air from a source within the safety system supplied thereacross via a fixed piping system implemented therein and/or access of the breathable air. The data processing device also monitors the safety system and/or one or more components thereof based on the collected number of parameters.
Abstract:
An emergency air replenishment system includes an emergency air fill station coupled to a fixed piping system associated with a source of replenishment of breathable air, and an air bottle. The emergency air fill station includes a first connector that is connectably complementary to a second connector of the air bottle. The first connector is couplable to the second connector based on insertion of the second connector thereinto automatically exerting a force along an axial length thereof that automatically translates into a locking element girdling the first connector moving against a linear direction of the exerted force to lock on to the second connector. A volume of the breathable air in the air bottle is filled from the fixed piping system via the emergency air fill station based on the locking of the first connector to the second connector.
Abstract:
A safety system and method of an air distribution system having at least one fill panel are disclosed. In one embodiment, the safety system includes a supply unit of a structure to facilitate delivery of breathable air from a source of compressed air to an air distribution system of the structure, a valve of the air distribution system to prevent leakage of the breathable air from the air distribution system potentially leading to loss of a system pressure, and a fill panel interior to the building structure having RIC/UAC fitting pressure rated for each fill outlet of the fill panel to fill a breathable air apparatus expediting a breathable air extraction process from the air distribution system and to provide the breathable air to the breathable air apparatus at multiple locations of the structure.
Abstract:
A safety system and method of an air distribution system of a mine structure is disclosed. In one embodiment, the air distribution includes a supply unit installed on a particular wall of the first set of walls to facilitate delivery of breathable air from a source of compressed air to an emergency support system of the mine structure, a fill site interior to the mine structure to provide the breathable air to a breathable air apparatus at multiple locations of the mine structure, a secure chamber of the fill site as a safety shield that confines a possible rupture of an over-pressurized breathable air apparatus within the secure chamber, a distribution structure that is compatible with use with compressed air that facilitates dissemination of the breathable air of the source of compressed air to multiple locations of the mine structure.
Abstract:
Disclosed are methods and a safety system of a structure for an air parameter based automatic bypassing of a source of breathable air within the safety system. In accordance therewith, an air analysis device is installed within the safety system along an air flow path of the breathable air from the source thereof. The safety system has a fixed piping system installed within the structure for supply of the breathable air across the safety system. A sensor associated with the air analysis device automatically detects a parameter of the breathable air circulating within the safety system. In response to detecting that the parameter of the breathable air is outside a predetermined threshold value, through a bypass controller device communicatively coupled to the air analysis device, the source of the breathable air is automatically bypassed with respect to the supply of the breathable air across the safety system.