LDR | | 03716cmm u2200769 i 4500 |
001 | | 000000322366 |
003 | | OCoLC |
005 | | 20230613114348 |
006 | | m d |
007 | | cr ||||||||||| |
008 | | 210307t20212021flua ob 001 0 eng |
010 | |
▼a 2021002750 |
015 | |
▼a GBC180947
▼2 bnb |
016 | 7 |
▼a 020202970
▼2 Uk |
019 | |
▼a 1256541436 |
020 | |
▼a 9780367567699
▼q electronic book |
020 | |
▼a 0367567695
▼q electronic book |
020 | |
▼a 9781000406627
▼q electronic book |
020 | |
▼a 1000406628
▼q electronic book |
020 | |
▼a 9781000406641
▼q electronic book |
020 | |
▼a 1000406644
▼q electronic book |
020 | |
▼z 9780367559410
▼q hardcover |
020 | |
▼z 0367559412 |
024 | 7 |
▼a 10.1201/9780367567699
▼2 doi |
035 | |
▼a 2915243
▼b (N$T) |
035 | |
▼a (OCoLC)1245246856
▼z (OCoLC)1256541436 |
037 | |
▼a 9780367567699
▼b Taylor & Francis |
040 | |
▼a DLC
▼b eng
▼e rda
▼c DLC
▼d OCLCO
▼d OCLCF
▼d UKAHL
▼d TYFRS
▼d UKMGB
▼d YDX
▼d N$T
▼d 248032 |
042 | |
▼a pcc |
049 | |
▼a MAIN |
050 | 04 |
▼a TJ260
▼b .T4933 2021 |
072 | 7 |
▼a SCI
▼x 024000
▼2 bisacsh |
072 | 7 |
▼a TEC
▼x 007000
▼2 bisacsh |
072 | 7 |
▼a TEC
▼x 021000
▼2 bisacsh |
072 | 7 |
▼a TGMB
▼2 bicssc |
082 | 00 |
▼a 621.47/120284
▼2 23 |
245 | 00 |
▼a Thermal energy storage with phase change materials /
▼c edited by Mohammad M. Farid, Amar Auckaili, Gohar Gholambozanjani.
▼h [electronic resource] |
250 | |
▼a First edition. |
264 | 1 |
▼a Boca Raton, FL :
▼b CRC Press,
▼c 2021. |
264 | 4 |
▼c 짤2021 |
300 | |
▼a 1 online resource :
▼b illustrations (some color) |
336 | |
▼a text
▼b txt
▼2 rdacontent |
337 | |
▼a computer
▼b c
▼2 rdamedia |
338 | |
▼a online resource
▼b cr
▼2 rdacarrier |
504 | |
▼a Includes bibliographical references and index. |
505 | 0 |
▼a Mathematical analysis of phase change process -- Energy saving, peak load shifting and price based control heating using phase change materials -- Cold storage applications -- Microencapsulation of phase change materials. |
520 | |
▼a "This book focuses on latent heat storage, which is one of the most efficient ways of storing thermal energy. Unlike the sensible heat storage method, latent heat storage method provides much higher storage density, with a smaller difference between storing and releasing temperatures"--
▼c Provided by publisher. |
545 | 0 |
▼a Professor Mohammed Mehdi Faridisa full professor (Personal Chair) at the University of Auckland, New Zealand. Dr Amar Auckaili is a professional teaching fellow at the University of Auckland, New Zealand. Dr. Gohar Gholambozanjani is a research assistant at the University of Auckland, New Zealand. |
588 | |
▼a Description based on online resource; title from digital title page (viewed on September 09, 2021). |
590 | |
▼a OCLC control number change |
650 | 0 |
▼a Heat storage. |
650 | 0 |
▼a Materials
▼x Thermal properties. |
650 | 0 |
▼a Phase rule and equilibrium. |
650 | 7 |
▼a SCIENCE / Energy
▼2 bisacsh |
650 | 7 |
▼a TECHNOLOGY / Electricity
▼2 bisacsh |
650 | 7 |
▼a TECHNOLOGY / Material Science
▼2 bisacsh |
650 | 7 |
▼a Heat storage.
▼2 fast
▼0 (OCoLC)fst00953981 |
650 | 7 |
▼a Materials
▼x Thermal properties.
▼2 fast
▼0 (OCoLC)fst01011896 |
650 | 7 |
▼a Phase rule and equilibrium.
▼2 fast
▼0 (OCoLC)fst01060399 |
655 | 4 |
▼a Electronic books. |
700 | 1 |
▼a Farid, Mohammed M.,
▼e editor. |
700 | 1 |
▼a Auckaili, Amar M.,
▼e editor. |
700 | 1 |
▼a Gholambozanjani, Gohar,
▼e editor. |
776 | 08 |
▼i Print version:
▼t Thermal energy storage with phase change materials
▼b First edition.
▼d Boca Raton : CRC Press, 2021
▼z 9780367559410
▼w (DLC) 2021002749 |
856 | 40 |
▼3 EBSCOhost
▼u https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&db=nlabk&AN=2915243 |
938 | |
▼a EBSCOhost
▼b EBSC
▼n 2915243 |
990 | |
▼a 관리자 |
994 | |
▼a 92
▼b N$T |