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Ditemukan 8558 dokumen yang sesuai dengan query
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Srinivasan, A.V., 1936-
Cambridge, UK: Cambridge University Press, 2001
620.11 SRI s
Buku Teks  Universitas Indonesia Library
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New York: John Wiley & Sons, 2002
R 620.11 Enc (I)
Buku Referensi  Universitas Indonesia Library
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New York : John Wiley & Sons, 2002
R 620.11 ENC I
Buku Referensi  Universitas Indonesia Library
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New York: John Wiley & Sons, 2002
R 620.11 ENC II
Buku Referensi  Universitas Indonesia Library
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"Smart polymers are polymers that respond to different stimuli or changes in the environment. Smart Polymers and their Applications reviews the types, synthesis, properties, and applications of smart polymers.
Chapters in part one focus on types of polymers, including temperature-, pH-, photo-, and enzyme-responsive polymers. Shape memory polymers, smart polymer hydrogels, and self-healing polymer systems are also explored. Part two highlights applications of smart polymers, including smart instructive polymer substrates for tissue engineering; smart polymer nanocarriers for drug delivery; the use of smart polymers in medical devices for minimally invasive surgery, diagnosis, and other applications; and smart polymers for bioseparation and other biotechnology applications. Further chapters discuss the use of smart polymers for textile and packaging applications, and for optical data storage."
Cambridge, UK: Woodhead, 2014
e20427697
eBooks  Universitas Indonesia Library
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Stefanie Aylien Jonatan
"Fasad merupakan salah satu elemen penting yang berfungsi untuk mengatur aliran energi pada bangunan. Fasad adaptif diperlukan karena kemampuannya untuk menyediakan fleksibilitas dalam aspek aliran energi dan mampu merespon kondisi eksternal yang dinamis untuk mencapai kenyamanan termal bangunan sehingga mampu mengatur penggunaan energi dalam bangunan. Fasad adaptif dapat dicapai dengan beberapa strategi, salah satunya adalah penggunaan smart material yaitu material yang mampu merespon terhadap perubahan pada medan energi tertentu dengan cara mengubah properti materialnya. Skripsi ini bertujuan untuk melihat potensi smart material pada fasad bangunan dan aplikasinya dalam membentuk fasad adaptif untuk mengidentifikasi dampak pada konsumsi energi, terutama pada aspek space cooling. Untuk mengidentifikasi dampak pada konsumsi energi, simulasi energi dilakukan dengan output nilai Energy Use Intensity (EUI) pada bangunan dengan fasad eksisting dan pengubahan fasad berbahan smart material PV dan PCM. Hasil EUI antar fasad kemudian dibandingkan untuk menilai dampak fasad berbahan smart material pada konsumsi energi. Selain itu nilai EUI yang diperoleh juga dibandingkan dengan standar untuk menilai kategori penggunaan energi yang dapat dicapai oleh bangunan. Dari hasil simulasi diperoleh bahwa tidak terdapat pengurangan konsumsi energi pada pengubahan fasad berbahan smart material apabila dibandingkan dengan penggunaan fasad eksisting. Sebaliknya, beberapa variasi fasad berbahan smart material PV dan PCM menunjukan peningkatan pada solar heat gain dan konsumsi energi bangunan terutama pada aspek space cooling. Meski begitu, bangunan dengan variasi fasad smart material masih dapat dikategorikan sebagai bangunan energi efisien menurut standar penggunaan energi di Indonesia.

Facade is an important element that regulates the flow of energy in buildings. Adaptive facades are needed for their ability to provide flexibility in terms of energy flow and for their responses to dynamic external conditions thus help achieve thermal comfort in buildings leading to the impact on energy use. Adaptive facades can be achieved with several strategies, one of which is the use of smart materials, namely materials that are able to respond to changes of certain energy fields by changing their properties. This thesis aims to assess the potential of smart materials for building facades and their applications in forming adaptive facades to identify their impact on energy consumption, especially for space cooling. To do so, energy simulations are carried out with the output of Energy Use Intensity (EUI) value on buildings. This simulation is conducted on a chosen building with existing facades and with variations of facades modification using smart materials; PV and PCM. EUI results between facades are then compared to assess the impact of each facades on energy consumption. In addition, the obtained EUI values are also compared with standards to assess the categories of energy use that can be achieved by the building. The simulation results show that there is no reduction in energy consumption in the modification of facades made of smart materials when compared to the use of the existing facade. In contrast, several variations of façades made of PV and PCM smart materials show an increase in indoor solar heat gain and building energy consumption, especially for space cooling purposes. Even so, buildings with smart material facade variations can still be categorized as energy efficient buildings according to energy use standards in Indonesia."
Depok: Fakultas Teknik Universitas Indonesia, 2023
S-pdf
UI - Skripsi Membership  Universitas Indonesia Library
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Lefteri, Chris
London: Laurence King Publishing, 2014
620.11 LEF m
Buku Teks  Universitas Indonesia Library
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Sinopoli, James
London: Elsevier , 2010
696 SIN s
Buku Teks  Universitas Indonesia Library
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Smith, Ralph C.
"Smart Material Systems: Model Development describes several novel applications currently under investigation that exploit the unique actuator and sensor capabilities of smart material compounds. In addition to present and projected applications, this book provides comprehensive coverage of both linear and nonlinear modeling techniques necessary to characterize materials in a manner that facilitates transducer design and control development. The author focuses on ferroelectric, magnetic, and shape memory compounds and also addresses applications exploiting amorphous and ionic polymers, magnetorheological compounds, and fiber optic sensors.
Three classes of nonlinear models are discussed, all of which provide unified characterization frameworks for the broad class of combined compounds. An extensive discussion of structural models based on linear and nonlinear constitutive models is included, as is a chapter on numerical techniques for approximating solutions to the structural systems. The author also provides a synergistic treatment of material characterization, including significant discussion of the physics underlying nonlinear behavior, the development of nonlinear constitutive relations, the development of system models based on these constitutive relations, and the formulation of numerical techniques for approximating solutions to the resulting system models. To aid the understanding of both mathematical and physical terminology, an extensive glossary of terms is provided in an appendix. Furthermore, MATLAB software for representative models is provided at an accompanying website."
Philadelphia: Society for Industrial and Applied Mathematics, 2005
e20443246
eBooks  Universitas Indonesia Library
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New York: John Wiley & Sons, 1995
621.369 2 FIB
Buku Teks  Universitas Indonesia Library
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