Monday, March 15, 2021

Various Types of Fire monitoring system


Fire monitoring systems are designed to discover fires early in their development when the time will still be available for the safe evacuation of occupants. Early detection also plays a significant role in protecting the safety of emergency response personnel. Human and property loss can be reduced and downtime for the operation minimized through early detection because control efforts are started while the fire is still small. Most alarm systems provide information to emergency responders on the location of the fire, speeding the process of fire control.

 

To be useful, detectors must be coupled with alarms. Alarm systems provide notice to at least the building occupants and usually transmit a signal to a staffed monitoring station either on or off-site. In some cases, alarms may go directly to the fire department, although in most locations this is no longer the typical approach.

 

Did you know that there are actually four different types of fire monitoring systems that are used to sense the presence of a fire? The best way to determine which kind of fire monitoring system is the right choice for your business or building is to understand the differences between them. The four various types of fire monitoring system are ionization/photoelectric, photoelectric, ionization, and heat. The differences in these four types are found in how they detect a fire – heat is obviously triggered by temperature while the other three are from the smoke.

 

Ionization

Ionization fire monitoring system actually have a constant electrical current running between two metal plates inside of the device. The electrical current is disrupted when smoke enters the device chamber and triggers the alarm. This type of detector is great for quickly identifying fires that are fast-burning.

 

Photoelectric

Photoelectric detectors work similarly to Ionization detectors, but with a beam of light instead of electricity. When smoke enters the chamber, the light beam is scattered, which then triggers the alarm. This type of device is good at identifying smaller fires than an ionization detector. They are known to be highly reliable and rarely produce false alarms.

 

Heat

Heat detectors work by detecting an increase in air temperature caused by flames. While these detectors have been known to trigger a few false alarms, they have a longer reaction time than other smoke detectors. False alarms may be triggered in buildings that are abnormally steamy, dusty, or humid and are best suited for buildings that are not continuously occupied such as warehouses or storage facilities.

 

Ionization/Photoelectric

A crowd favorite of many professionals, combination ionization and photoelectric fire monitoring system is considered by many to be the best type of detector. These devices house both types of smoke detectors (not heat) in one unit to ensure that any presence of smoke is detected as soon as possible.

 

Afantagé`s good and efficient emergency evacuation system equipment and hardware are almost 98 - 100% accurate. It helps to count, tally & track at exits and/or mustering areas. It is traceable to the last known badge-in and sign-in locale, or the exact last halting location. It helps to communicate information (not data) to first responders through an independent cloud-based execution system. It is autonomous. RFID reader provider from Afantagé has an automatic alert using sensors to track temperature, smoke, and gas that operate at multiple frequencies for different countries. It is reactionary to relay phone calls, SMS, email as well as sirens, lights, and sprinklers. All private information is withheld in the system unless the alarm is sounded. Afantagé with its non-obstructive installation procedure for the fire monitoring system is second in line and all its fail-safe measures work at a variety of angles. In addition, the ownership cost, maintenance, and licensing of Afantagé`s equipment and hardware are highly economical. To know more, visit- https://www.afantage.com/

Friday, February 19, 2021

Necessary Elements for a Successful Emergency Evacuation System


 

Extreme weather conditions, bomb threats, combustible dust explosions, sudden fire outbreaks- all these events require people to switch on emergency gear. Since these difficult situations can invariably cause panic, having a solid emergency evacuation plan in place is the best way to handle them. The basic sequence of evacuation involves the following steps- Detect, Decide, Alarm, Reaction, Movements, Transport. However, first responders need to identify souls evacuated and unaccounted for. In a large industrial or commercial complex, the building manager is rarely able to do so with a vague degree of certainty. The building manager is also not being able to ascertain the location of the trapped victims. Therefore, an accurate and autonomous emergency evacuation system Malaysia from Afantagé can alleviate the pressure and saves lives.

In the following article, Afantagé has identified some crucial elements that should be included in every building’s emergency evacuation plan. So read on-

Conditions that specifically requires an evacuation

Many conditions tend to create an emergency situation. However, not all of them would require an evacuation. Whether or not you need to evacuate depends on various factors. These include the type of emergency and the characteristics of the building (e.g., how many stories, the construction material). One plan should specify the exact conditions that require an evacuation of all building residences or office employees.

A crystal clear single chain of command and planning

Who is responsible for assessing the situation and deciding if an evacuation is necessary? Who will take charge on each floor of a high-rise building? What about notifying emergency services? Make sure everyone in the building knows exactly what their role is and has been properly trained to perform it is very crucial and essential.

Specified emergency evacuation plan procedures

A good and efficient emergency evacuation system procedure involves marking all the locations of all emergency equipment, routes, and exits, and ensure they are kept clear of obstructions at all times. If the building has many interior spaces, such as stairwells without windows, consider painting arrows and marking exits with photoluminescent paint that glows in the dark.

Essential equipment required

In some emergency situations, people may be required to wear personal protective equipment (PPE). These may include but are not limited to-

Safety glasses, goggles, or face shields
Hard hats and safety shoes
Chemical suits, gloves, hoods, and boots
Special body protection for abnormal environmental conditions

Make sure that the emergency equipment is well-stocked, and clearly mark storage locations of that equipment in the emergency evacuation plan.



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