Civil Engineering Reference
In-Depth Information
Forest L, Gibiat V, Woignier T (1998) Biots theory of acoustic propagation in porous media
applied to aerogels and alcogels. J Non-Cryst Solids 225:287-292
Forest L, Gibiat V, Hooley A (2001) Impedance matching and acoustic absorption in granular
layers of silica aerogels. J Non-Cryst Solids 285:230-235
Hassouneh K, Alshboul A, Al-Salaymeh A (2010) Influence of windows on the energy balance of
apartment buildings in Amman. Energy Convers Manage 51:1583-1591
Ivanov GR, Tomova R, Djambova ST, Nadoliiski M, Dimova-Malinovska D (2010) Function-
alized aerogels—new nanomaterials for energy-efficient building. Preliminary AFM, nano-
indentation and EIS studies. J Phys: Conf Series 253. doi: 10.1088/1742-6596/253/1/012077
Jelle BP, Hynd A, Gustavsen A, Arasteh D, Goudey H, Hart R (2012) Fenestration of today and
tomorrow: a state-of-the-art review and future research opportunities. Sol Energy Mater Sol
Cells 96:1-28
Jensen KI, Schultz JM, Kristiansen FH (2004) Development of windows based on highly
insulating aerogel glazings. J Non-Cryst Solids 350:351-357
Kistler SS (1931) Coherent expanded aerogels and jellies. Nature 127
Koebel M, Rigacci A, Achard P (2012) Aerogel-based thermal superinsulation: an overview.
J Sol-Gel Sci Technol 63:315-339. doi: 10.1007/s10971-012-2792-9
Oral GK, Yener AK, Bayazit NT (2004) Building envelope design with the objective to ensure
thermal, visual and acoustic comfort conditions. Build Environ 3:281-287
Pajonk GM (2003) Some applications of silica aerogels. Colloid Polym Sci 281:637-651
Parmenter KE, Milstein F (1998) Mechanical properties of silica aerogels. J Non-Cryst Solids
223(3):179-189
Pérez-Lombard L, Ortiz J, Pout C (2008) A review on buildings energy consumption information.
Energy Build 40:394-398
Pierre
AC,
Pajonk
GM
(2002)
Chemistry
of
aerogels
and
their
applications.
Chem
Rev
102:4243-4265
Reim M, Beck A, Körner W, Petricevic R, Glora M, Weth M, Schliermann T, Schmidt CH, Pötter FJ,
Fricke J (2002) Highly insulating aerogel glazing for solar energy usage. Solar Energy 1:21-29
Reim M, Reichenauer G, Körner W, Manara J, Arduini-Schuster M, Korder S, Beck A, Fricke J
(2004) Silica-aerogel granulate—structural, optical and thermal properties. J Non-Cryst
Solids 350:358-363
Reim M, Korner W, Manara J, Korder S, Arduini-Schuster M, Ebert HP, Fricke J (2005) Silica
aerogel granulate material for thermal insulation and daylighting. Sol Energy 2:131-139
Rigacci A, Einarsrudb M, Nilsenb E, Pirardc R, Ehrburger-Dolled F, Chevalier B (2004)
Improvement of the silica aerogel strengthening process for scaling-up monolithic tile
production. J Non-Cryst Solids 350:196-201
Riffat SB, Qiu G (2012) A review of state-of-the-art aerogel applications in buildings. Int J Low-
Carbon Technol Adv Access
Sadineni SB, Madala S, Boehm RF (2011) Passive building energy savings: a review of building
envelope components. Renew Sustain Energy Rev 15:3617-3631
Schultz JM, Jensen KI, Kristiansen FH (2005) Super insulating aerogel glazing. Sol Energy Mater
Sol Cells 89:275-285
Schultz JM, Jensen KI (2008) Evacuated aerogel glazings. Vacuum 82:723-729
Soleimani Dorcheh A, Abbasi MH (2008) Silica aerogel: synthesis, properties and character-
ization. J Mater Process Technol 199:10-26
Tajiri K, Igarashi K (1998) The effect of the preparation conditions on the optical properties of
transparent silica aerogels. Sol Energy Mater Sol Cells 4:189-195
Werner M, Brand L (2010) Focus Report 2010—Aerogels, general sector reports, chemistry and
materials, observatory NANO. Available at http://www.observatorynano.eu/project/filesystem/
files/WP2_ChemistryMaterials_FocusReport_Aerogels_29_04_2010.pdf .
Accessed
22
Jan
2013
Wong IL, Eames PC, Perera RS (2007) A review of transparent insulation systems and the
evaluation of payback period for building applications. Sol Energy 81(9):1058-1071
Search WWH ::




Custom Search