AbstractThis paper is summarizing the results of a research carried out for assessing thermal performances of Trombe walls integrated in lightweight constructions. Phase-change materials, substituting heavy thermal storage mass, have been used in order to improve the energy performance of the system. For evaluating the device sensibility to external environmental conditions, five Australian cities (representative of five different climatic zones) have been considered. Furthermore, variations of PCM position in the external envelope and of melting point temperatures have been taken in account in order to define the most suitable technology for each climatic area
Phase change materials (PCM) can improve the thermal performance of lightweight building walls (LBW)...
Generally, buildings with lightweight construction tend to have large temperature fluctuations due t...
In temperate climates like UK, buildings constructed with high thermal mass materials have the intri...
AbstractThis paper is summarizing the results of a research carried out for assessing thermal perfor...
AbstractPhase change materials (PCM), being able to supply dynamic thermal capacity, have ever shown...
ACLAs the heating demands of buildings drop considerably, the use of solar walls makes increasing se...
This paper presents results of the potential thermal enhancement in building walls derived from usin...
The energy consumption is a major contributor to the absorption of the economic resources of familie...
The number of houses of lightweight timber or steel frame construction being built over recent years...
A traditional Trombe wall is known as a high thermal-mass wall, situated behind a window of a room a...
AbstractIn order to compensate for the small storage capacity of lightweight buildings, that usually...
Increasing awareness of the obligation to preserve energy resources and the rising cost structures o...
Trombe walls with phase change materials (PCMs) are well known as passive energy saving technologies...
Phase change material (PCM), placed in an exterior wall, alters the temperature profile within the w...
Recently, there has been a growing interest in passive climate design aimed at reducing the large en...
Phase change materials (PCM) can improve the thermal performance of lightweight building walls (LBW)...
Generally, buildings with lightweight construction tend to have large temperature fluctuations due t...
In temperate climates like UK, buildings constructed with high thermal mass materials have the intri...
AbstractThis paper is summarizing the results of a research carried out for assessing thermal perfor...
AbstractPhase change materials (PCM), being able to supply dynamic thermal capacity, have ever shown...
ACLAs the heating demands of buildings drop considerably, the use of solar walls makes increasing se...
This paper presents results of the potential thermal enhancement in building walls derived from usin...
The energy consumption is a major contributor to the absorption of the economic resources of familie...
The number of houses of lightweight timber or steel frame construction being built over recent years...
A traditional Trombe wall is known as a high thermal-mass wall, situated behind a window of a room a...
AbstractIn order to compensate for the small storage capacity of lightweight buildings, that usually...
Increasing awareness of the obligation to preserve energy resources and the rising cost structures o...
Trombe walls with phase change materials (PCMs) are well known as passive energy saving technologies...
Phase change material (PCM), placed in an exterior wall, alters the temperature profile within the w...
Recently, there has been a growing interest in passive climate design aimed at reducing the large en...
Phase change materials (PCM) can improve the thermal performance of lightweight building walls (LBW)...
Generally, buildings with lightweight construction tend to have large temperature fluctuations due t...
In temperate climates like UK, buildings constructed with high thermal mass materials have the intri...