[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Desai et al., 2014 - Google Patents

Development of thermally adaptive Engineered Cementitious Composite for passive heat storage

Desai et al., 2014

Document ID
4122355282578179528
Author
Desai D
Miller M
Lynch J
Li V
Publication year
Publication venue
Construction and Building Materials

External Links

Snippet

To provide passive heat storage in buildings, materials exhibiting a phase-change within building operating temperature can be incorporated into the envelope material. This study assesses the viability of incorporating a paraffin phase change material (PCM) into an …
Continue reading at www.sciencedirect.com (other versions)

Similar Documents

Publication Publication Date Title
Desai et al. Development of thermally adaptive Engineered Cementitious Composite for passive heat storage
Cunha et al. Mortars based in different binders with incorporation of phase-change materials: Physical and mechanical properties
Li et al. Novel hybrid microencapsulated phase change materials incorporated wallboard for year-long year energy storage in buildings
Shadnia et al. Experimental study of geopolymer mortar with incorporated PCM
O'Hegarty et al. Development of thin precast concrete sandwich panels: Challenges and outcomes
Shi et al. Experimental and numerical study on effective thermal conductivity of novel form-stable basalt fiber composite concrete with PCMs for thermal storage
Sukontasukkul et al. Thermal storage properties of lightweight concrete incorporating phase change materials with different fusion points in hybrid form for high temperature applications
Xu et al. Investigation on the properties of a new type of concrete blocks incorporated with PEG/SiO2 composite phase change material
Narain et al. Design and application of concrete tiles enhanced with microencapsulated phase-change material
Abdellatef et al. Thermal, microstructural and numerical analysis of hempcrete-microencapsulated phase change material composites
Faheem et al. A numerical study on the thermal performance of night ventilated hollow core slabs cast with micro-encapsulated PCM concrete
Bai et al. Study on the thermal properties of hollow shale blocks as self‐Insulating Wall materials
Han et al. Enhance the thermal storage of cement-based composites with phase change materials and carbon nanotubes
US9512344B2 (en) Thermally adaptive ductile concrete
Mandilaras et al. A hybrid methodology for the determination of the effective heat capacity of PCM enhanced building components
Niall et al. Mechanical and thermal evaluation of different types of PCM–concrete composite panels
Christen et al. Phase change material infused recycled brick aggregate in 3D printed concrete
Essid et al. Experimental and numerical thermal properties investigation of cement-based materials modified with PCM for building construction use
Priyanka et al. Functional and strength characteristics of EPS beads incorporated foam concrete wall panels
Liu et al. Comprehensive investigations on printability and thermal performance of cementitious material incorporated with PCM under various conditions
Horma et al. Thermal performance study of a cement-based mortar incorporating EPS beads
Zhang et al. Pore pressure and spalling in fire-exposed high-strength self-consolidating concrete reinforced with hybrid fibres
Mawra et al. Thermo-physical and energy performance of building envelope modified by natural fiber through building information modelling
Li et al. Thermal cracking analysis during pipe cooling of mass concrete using particle flow code
Bezerra et al. Experimental and numerical investigation of fatigue in base-rendering mortar used in façades undergoing thermal cycles