000 | 02212nam a22002777a 4500 | ||
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003 | OSt | ||
005 | 20250814124407.0 | ||
008 | 250814b |||||||| |||| 00| 0 eng d | ||
022 | _a18653537 | ||
040 | _cFoundation University | ||
050 |
_aTJ 163.3 _b.2019 A38 |
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110 |
_aSpringer International Publishing _912049 |
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245 |
_aAdvanced Energy Efficiency Technologies for Solar Heating, Cooling and Power Generation _cedited by Xudong Zhao and Xiaoli Ma |
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260 |
_aSwitzerland : _bSpringer International Publishing, _c2019. |
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300 |
_a1 online resource _b(xi, 544 p. col. ill.) |
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490 | _aGreen Energy and Technology | ||
500 | _aIn this book, the global solar resource will be briefly presented and the currently available solar systems will be illustrated. A number of advanced energy efficiency technologies, including heat pipes and loop heat pipes, PCM and PCM slurries, micro (mini)-channel panels, building integrate-able modular technologies, desiccant (adsorption and absorption) cycling, ejector cooling, heat pumps, as well as solar concentration and thermoelectric technologies will then be studied and characterised. Meanwhile, the applications of these technologies in various solar systems will be investigated. With the successful implementation of these advanced technologies, a few innovative solar systems applicable to rural and urban buildings are characterised. Based on the above analyses, the design principle and associated energy performance assessment method for these advanced solar systems will be delivered, while the associated economic and environmental performance analytic measures will also be discussed. In the end, a range of selected solar heating, cooling and power generation projects will be studied. | ||
650 |
_2LC _aPower resources _912050 |
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650 |
_2LC _aPower (Mechanics) _912051 |
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650 |
_2LC _aEnergy consumption _912052 |
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650 |
_2LC _aEnergy conservation _912053 |
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700 |
_aZhao, Xudong _912054 |
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700 |
_aMa, Xiaoli _912054 |
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856 |
_uhttps://drive.google.com/file/d/1T8aaOiq7TI1E-lMPqCnqhJ9ewWuUrbVs/view?usp=sharing _zView full document |
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942 |
_2lcc _cEJOURNAL _hTJ 163.3 _i.2019 A38 _k(SIET-IE) _n0 |
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999 |
_c4896 _d4896 |