Fire engineer
Budget: $5,000 – $10,000 AUD
Fire Engineer for Residential Property: Fire Risk Assessment and Detailed Report
- Looking for a fire engineer to conduct a comprehensive fire risk assessment for a residential property
- The ideal candidate should have experience in conducting fire risk assessments for residential properties, ensuring compliance with fire safety regulations
- The fire risk assessment should cover all aspects of fire safety, including fire prevention measures, detection systems, evacuation plans, and emergency response procedures
- The fire engineer should provide a detailed report after the assessment, highlighting potential fire hazards, recommended improvements, and any necessary fire protection system design changes
- The report should include a summary of findings, prioritized recommendations, and cost estimates for implementing the suggested improvements
- The fire engineer should have knowledge of residential fire safety standards and be able to provide tailored fire safety training to homeowners and residents, if required.
I'm requiring some services for a new residential fore suppression system,
The services required are,
Develop and manage a test program of the Fire Knight fire protection system - residential version to support a fire safety engineering agreement for this system to be used in residential dwellings. The Fire Knight residential is being proposed as a fire suppression system for where traditional sprinkler systems are not required or not practical to fit.
This program will consist of two version of compartment fire tests. For each version of the compartment fire test there shall be four burns, made up of the following:
• Three test burns with the Fire Knight system fitted and responding, and
• One uncontrolled test burn to baseline the behaviour and the response of a smoke alarm.
The two versions of compartment fire tests will be:
• Test series 1 - Compartment to be at least 3 m by 4 m and 2.4 m in height. The Fire Knight is to be positioned on the ceiling and in the middle of the compartment. A single door on one of the 3 m walls shall be open fully. On the other 3 m wall there shall be a curtain going from floor to ceiling. A single seater sofa shall be pushed up against this curtain. This sofa shall not be fire retardant treated. The fire source, small pool of heptane (to be confirmed) shall be positioned under the sofa and in its middle. Parameters of interest shall be the time when the Fire Knight detects a fire and its ability to suppress or extinguish the fire.
• Test series 2 - Compartment to be at least 3 m by 4 m and 2.4 m in height. The Fire Knight is to be positioned on the ceiling and in the middle of the compartment. A single door on one of the 3 m walls shall be open fully. In the middle of the
compartment floor and at floor height shall be a fully charged Li-ion battery of at least 36V 7.8Ah. This battery shall be ignited, by a procedure to be confirmed, to start a fire. Parameters of interest shall be the time when the Fire Knight detects a
fire and its ability to suppress or extinguish the fire.
Analyse the test data to determine the Fire Knights capabilities. This shall be presented in a Fire Safety Evaluation (FSE) report.
To carry out,
• Develop the test program,
• Work with fire test lab to undertake the test program,
• Witness the fire tests,
• Analyse the results,
• Develop an FSE on the application and capability of the Fire Knight for residential
protection accepted globally
As the system is a first of its kind I am wanting to achieve any code or codes to allow the system to be sold globally. All approvals must be given with global recognition.
- Looking for a fire engineer to conduct a comprehensive fire risk assessment for a residential property
- The ideal candidate should have experience in conducting fire risk assessments for residential properties, ensuring compliance with fire safety regulations
- The fire risk assessment should cover all aspects of fire safety, including fire prevention measures, detection systems, evacuation plans, and emergency response procedures
- The fire engineer should provide a detailed report after the assessment, highlighting potential fire hazards, recommended improvements, and any necessary fire protection system design changes
- The report should include a summary of findings, prioritized recommendations, and cost estimates for implementing the suggested improvements
- The fire engineer should have knowledge of residential fire safety standards and be able to provide tailored fire safety training to homeowners and residents, if required.
I'm requiring some services for a new residential fore suppression system,
The services required are,
Develop and manage a test program of the Fire Knight fire protection system - residential version to support a fire safety engineering agreement for this system to be used in residential dwellings. The Fire Knight residential is being proposed as a fire suppression system for where traditional sprinkler systems are not required or not practical to fit.
This program will consist of two version of compartment fire tests. For each version of the compartment fire test there shall be four burns, made up of the following:
• Three test burns with the Fire Knight system fitted and responding, and
• One uncontrolled test burn to baseline the behaviour and the response of a smoke alarm.
The two versions of compartment fire tests will be:
• Test series 1 - Compartment to be at least 3 m by 4 m and 2.4 m in height. The Fire Knight is to be positioned on the ceiling and in the middle of the compartment. A single door on one of the 3 m walls shall be open fully. On the other 3 m wall there shall be a curtain going from floor to ceiling. A single seater sofa shall be pushed up against this curtain. This sofa shall not be fire retardant treated. The fire source, small pool of heptane (to be confirmed) shall be positioned under the sofa and in its middle. Parameters of interest shall be the time when the Fire Knight detects a fire and its ability to suppress or extinguish the fire.
• Test series 2 - Compartment to be at least 3 m by 4 m and 2.4 m in height. The Fire Knight is to be positioned on the ceiling and in the middle of the compartment. A single door on one of the 3 m walls shall be open fully. In the middle of the
compartment floor and at floor height shall be a fully charged Li-ion battery of at least 36V 7.8Ah. This battery shall be ignited, by a procedure to be confirmed, to start a fire. Parameters of interest shall be the time when the Fire Knight detects a
fire and its ability to suppress or extinguish the fire.
Analyse the test data to determine the Fire Knights capabilities. This shall be presented in a Fire Safety Evaluation (FSE) report.
To carry out,
• Develop the test program,
• Work with fire test lab to undertake the test program,
• Witness the fire tests,
• Analyse the results,
• Develop an FSE on the application and capability of the Fire Knight for residential
protection accepted globally
As the system is a first of its kind I am wanting to achieve any code or codes to allow the system to be sold globally. All approvals must be given with global recognition.