When firefighters face a heat exposure, free water may be present in the fire protective clothing (FPC). Recently, the incorporation of Phase Change Materials (PCMs) into FPC has shown great promise to increase thermal performance when in the dry state. However, the presence of water in firefighting garments is expected and how this alters the thermal behavior of a PCM FPC assembly still remains to be discussed in the literature. Hence, this study concerns the effect of free water presence in the outer shell and/or thermal inner of a PCM FPC assembly consisting of 3 layers. A new mathematical model is proposed where the PCM is assumed to be incorporated in the thermal inner. A numerical analysis is performed where PCM textile latent heat, w...
This paper presents a model for heat and moisture transfer through firefighters’ protective clothing...
The goal of PCM textiles is to create reusable energy to maintain body temperature, as well as to op...
Under the project DIF-Jacket [LINK 1], the multidisciplinary team (CEFT, CeNTI and CITEVE) are combi...
Firefighters usually encounter high heat flux exposures, which can cause severe burns. The addition ...
We model the behaviour of heat transport through a new type of protective clothing that varies its p...
Firefighting scenarios may be characterized by various transient periods (i.e. phases), which consis...
INTRODUCTION High - temperature phase change materials have been vastly applied in high temperature ...
Phase change materials (PCMs) are widely used in heating and cooling applications to reduce the mism...
Firefighters are exposed to high risk scenarios in which the prevention of extreme heat injuries is ...
Nowadays, despite the evolution of personal protective equipment (PPE), the number of firefighters i...
AbstractProtective clothing is important to work and for survival for firefighters in extreme enviro...
Considering the high level of heat and flame exposure firefighters encounter while performing their ...
There are two types of Phase Change Materials (PCMs) which have been developed and adopted in textil...
Multilayered protective fabric assemblies comprising a Nomex III woven outer layer, Nomex nonwoven t...
A composite fabric consisting of an outer shell, moisture barrier, thermal liner and comfort layer u...
This paper presents a model for heat and moisture transfer through firefighters’ protective clothing...
The goal of PCM textiles is to create reusable energy to maintain body temperature, as well as to op...
Under the project DIF-Jacket [LINK 1], the multidisciplinary team (CEFT, CeNTI and CITEVE) are combi...
Firefighters usually encounter high heat flux exposures, which can cause severe burns. The addition ...
We model the behaviour of heat transport through a new type of protective clothing that varies its p...
Firefighting scenarios may be characterized by various transient periods (i.e. phases), which consis...
INTRODUCTION High - temperature phase change materials have been vastly applied in high temperature ...
Phase change materials (PCMs) are widely used in heating and cooling applications to reduce the mism...
Firefighters are exposed to high risk scenarios in which the prevention of extreme heat injuries is ...
Nowadays, despite the evolution of personal protective equipment (PPE), the number of firefighters i...
AbstractProtective clothing is important to work and for survival for firefighters in extreme enviro...
Considering the high level of heat and flame exposure firefighters encounter while performing their ...
There are two types of Phase Change Materials (PCMs) which have been developed and adopted in textil...
Multilayered protective fabric assemblies comprising a Nomex III woven outer layer, Nomex nonwoven t...
A composite fabric consisting of an outer shell, moisture barrier, thermal liner and comfort layer u...
This paper presents a model for heat and moisture transfer through firefighters’ protective clothing...
The goal of PCM textiles is to create reusable energy to maintain body temperature, as well as to op...
Under the project DIF-Jacket [LINK 1], the multidisciplinary team (CEFT, CeNTI and CITEVE) are combi...