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| 1 | New Approach and Alternate Criterion for Heat-transfer Analysis of Building Walls and Its Applications显示文摘Energy consumed by buildings accounts for approximately one-third of the total energy consumption of the society.Moreover,energy systems employed in buildings emit hazardous pollutants,such as,NOx,PM2.5 and CO2,into the environment.Consequently,increasing the energy efficiency of buildings constitutes an important problem concerning the field of building-energy and environment conservation.Thermal resistance and capacitance are two important thermophysical properties of building walls significantly impacting their heat-transfer performance.Traditional theories concerning these properties,however,face certain limitations:(1)the concept of thermal resistance is only valid for one-dimensional,steady heat conduction without existence of an internal heat source;(2)thermal resistance and capacitance are relevant,and can,therefore,not be used to analyze heat-transfer and storage performance,respectively,of building walls.Based on the entransy-dissipation-based impedance theory,a new approach towards realization of heat-transfer analysis and optimization has been proposed in this study.The weightiness of thermal resistance and capacitance with regard to heat-transfer performance has been described along with deduction of the corresponding substitutional relation via illustrative examples.The proposed approach has been demonstrated to effectively overcome aforementioned limitations of building energy conservation problems. | Yu Zhang Xu Zhang | 2021 | Journal of Building Material Science2021,3,2: | 2 |
| 2 | Interlabo- properties of porous build- ing materials 显示文摘 | ROELS S CARMELIET J ratory comparison of hygric HENS H | 2004 | Journal of Thermal Envelope and Building Science2004,27,4: | 1 |
| 3 | Prediction for the Increase in Pressure and Water Content of Vacuum Insulation Panels(VIPs)Integrated Into Building Construction Using Model Calculation显示文摘 | Hubert Schwab Ulrich Heinemann Johannes Wachtel | 2005 | Journal of Thermal Envelope and Building Science2005,28,4: | 1 |
| 4 | Prediction of Service Life for Vacuum Insulation Panels with Fumed Silica Kernel and Foil Cover显示文摘 | Hubert Schwab Ulrich Heinemann Andreas Beck | 2005 | Journal of Thermal Envelope and Building Science2005,28,4: | 1 |
| 5 | Uhimate load analysis of bridge decks 显示文摘 | SAWKO F SAHA G P | 1967 | Building Science Journal1967,,2: | 1 |
| 6 | Dependence of Thermal Conductivity on Water Content in Vacuum Insulation Panels with Fumed Silica Kernels显示文摘 | HUBERT SCHWAB ULRICH HEINEMANN ANDREAS BECK | 2005 | Journal of Thermal Envelope and Building Science2005,28,4: | 1 |
| 7 | Observational study on com- parison of thermal environments in some types of urban blocks显示文摘 | Moriyama M Miyazaki H Yoshida A | 2002 | Journal of Architecture and Building Science2002,117,1490: | 1 |
| 8 | Prediction of service life for vacuum insulation panels with fumed silica kernel and foil eover显示文摘 | Schwab H Heinemann U Ebert H P | 2005 | Journal of Thermal Envelope and Building Science2005,28,4: | 1 |
| 9 | Towards an en- gineering model of material characteristics for input to ham transport simulations (Part 1) : An approach显示文摘 | GRUNEWALD J HAUPL P BOMBERG M | 2003 | Journal of Thermal Envelope and Building Science2003,26,4: | 1 |
| 10 | Cooling load reduction effect of green roof and green wall in the case of buildingwith thermal thin wall (Environmental Engineering)显示文摘 | Yamasaki M Mizutani A Ohsawa T | 2009 | Journal of Architecture and Building Science2009,15,29: | 1 |
| 11 | Pedestrian wind environment around build- ings: Literature review and practical examples显示文摘 | Locken B Carmeliet J | 2004 | Journal of Ther- mal Envelope and Building Science2004,28,2: | 1 |
| 12 | The influence of soil moisture in the unsaturated zone on the heat loss from buildings via the ground显示文摘 | Janssen H Carmeliet J Hens H | 2002 | Journal of Thermal Envelope and Building Science2002,25,27: | 1 |
| 13 | Potentials of Balanite Endocarp Pod Ash as a Cement Replacement Material显示文摘The exponential growth of agricultural wastes such as Balanite seed pod has resulted in waste management issues and finding alternatives through waste recycling is an interesting area of research.Balanite seed pods were collected in Yobe state,washed,dried,crushed.Balanite endocarp pod ash(BEPA)was calcined at 600°C for 3 hours in a muffle furnace and the biomass was characterized with X-ray fluorescence spectrometer to determine its chemical composition.The analysis showed that the ash composed of silica,alumina and ferric oxide(74.24 wt.%)indicated a strong pozzolan based on American Standard.The BEPA possessed a high loss on ignition of 8.24 wt.%owing to the presence of unburnt carbon in the ash.The ash obtained was sieved with 75µm sieve and cement was replaced with ash between 2.5 wt.%~12.5 wt.%at interval of 2.5 wt.%to assess its impact on cement properties such as setting time,consistence,mortar strength and water absorption.Results showed that as percentage replacement increases,the water absorption increased while the mortar strength diminished whereas as the curing days progressed its strength improved despite clinker diminution due to cement hydration.60 days strength for below 10 wt.%BEPA cement blend produced enhanced strength compared with control which is evidence of slow pozzolanic reactions.The optimum percentage replacement with BEPA was obtained at 7.5 wt.%replacement beyond which significantly affected the cement properties especially its strength.It could be agreed that BEPA has potentials to be considered and employed as a cement replacement material. | Hassan Waziri Olumide Olubajo | 2022 | Journal of Building Material Science2022,4,1: | 1 |
| 14 | Prediction of Service Life for Vacuum Insulation Panels with Fumed Silica Kernel and Foil Cover显示文摘 | Hubert Schwab Ulrich Heinemann Andreas Beck | 2005 | Journal of Thermal Envelope and Building Science2005,28,4: | 1 |
| 15 | Prediction for the Increase in Pressure and Water Content of Vacuum Insulation Panels(VIPs)Integrated into Building Construction using Model Calculation显示文摘 | Hubert Schwab Ulrich Heinemann Johannes Wachtel | 2005 | Journal of Thermal Envelope and Building Science2005,28,4: | 1 |
| 16 | Thermal Transport in Straw Insulation显示文摘 | Beck A Heinemann U Reidinger M | 2004 | Journal of Thermal Envelope and Building Science2004,27,3: | 1 |
| 17 | Experimental evaluation of naturally ventilated active envelopes显示文摘 | Saelens D Hens H | 2001 | International Journal of Thermal Envelopes and Building Science2001,25,2: | 1 |
| 18 | Prediction of Service Life for Vacuum Insulation Panels with Fumed Sili- ca Kernel and Foil Cover 显示文摘 | Hubert Schwab Ulrich Heinemann Andreas Beck | 2005 | Journal of Thermal Envelopeand Building Science2005,28,4: | 1 |
| 19 | Predic- tion for the Increase in Pressure and Water Content of Vacu- um Insulation Panels(VIPs) Integrated into Building Construc- tion using Model Calculation显示文摘 | Hubert Schwab Ulrich Heinemann Johannes Wachtel | 2005 | Journal of Thermal Envelope and Building Science2005,28,4: | 1 |
| 20 | Assessment method of numerical prediction models for combined heat, air and moisture transfer in building components: benchmarks for one- dimensional cases 显示文摘 | Hagentoft Carl-Eric Kalagasidis Angela Sasie | 2004 | Journal of Thermal Envelope and Building Science2004,27,4: | 1 |