Loading phase change material in a concrete based wall to enhance concrete thermal properties
暂无分享,去创建一个
[1] M. Sharifpur,et al. Numerical study of the placement and thickness of blocks equipped with phase change materials in a Trombe wall in a room- thermal performance prediction using ANN , 2022, Engineering Analysis with Boundary Elements.
[2] M. Sharifpur,et al. The effect of using non-Newtonian nanofluid on pressure drop and heat transfer in a capillary cooling system connected to a pouch lithium-ion battery connected to a solar system , 2022, Journal of Power Sources.
[3] M. Sharifpur,et al. Effect of simultaneous use of water-alumina nanofluid and phase change nanomaterial in a lithium-ion battery with a specific geometry connected solar system , 2022, Journal of Power Sources.
[4] M. Sharifpur,et al. Numerical study on performance of double-fluid parabolic trough solar collector occupied with hybrid non-Newtonian nanofluids: Investigation of effects of helical absorber tube using deep learning , 2022, Engineering Analysis with Boundary Elements.
[5] Alireza Moradikazerouni. Heat transfer characteristics of thermal energy storage system using single and multi-phase cooled heat sinks: A review , 2022, Journal of Energy Storage.
[6] M. Sharifpur,et al. Combining an active method and a passive method in cooling lithium-ion batteries and using the generated heat in heating a residential unit , 2022, Journal of Energy Storage.
[7] K. Chau,et al. Efficacy of applying discontinuous boundary condition on the heat transfer and entropy generation through a slip microchannel equipped with nanofluid , 2022, Engineering Applications of Computational Fluid Mechanics.
[8] H. M. Hosseini,et al. An analytical review on Spark Plasma Sintering of metals and alloys: from processing window, phase transformation, and property perspective , 2022, Critical Reviews in Solid State and Materials Sciences.
[9] A. Osintsev,et al. Specific Features of High-Voltage Consolidation of Powders: Theoretical and Experimental Study , 2022, Metallurgical and Materials Transactions B.
[10] Wensheng Lu,et al. Fabrication and energy efficiency of translucent concrete panel for building envelope , 2022, Energy.
[11] Rasool Kalbasi,et al. Buildings with less HVAC power demand by incorporating PCM into envelopes taking into account ASHRAE climate classification , 2022, Journal of Building Engineering.
[12] Rasool Kalbasi. Usefulness of PCM in building applications focusing on envelope heat exchange – Energy saving considering two scenarios , 2022, Sustainable Energy Technologies and Assessments.
[13] B. Jamil,et al. Development and comparison of parametric models to predict global solar radiation: a case study for the southern region of Saudi Arabia , 2022, Journal of Thermal Analysis and Calorimetry.
[14] Yujing Zhao,et al. Calcined Attapulgite Clay as Supplementary Cementing Material: Thermal Treatment, Hydration Activity and Mechanical Properties , 2022, International Journal of Concrete Structures and Materials.
[15] F. Almehmadi,et al. A novel study to examine dependency of indoor temperature and PCM to reduce energy consumption in buildings , 2022, Journal of Building Engineering.
[16] F. Almehmadi,et al. The effect of using phase change materials in a solar wall on the number of times of air conditioning per hour during day and night in different thicknesses of the solar wall , 2022, Journal of Building Engineering.
[17] M. Heidari,et al. Design considerations for net zero energy buildings for intensive, confined poultry production: A review of current insights, knowledge gaps, and future directions , 2022, Renewable and Sustainable Energy Reviews.
[18] P. Rajagopalan,et al. Feasibility of net zero energy high rise apartment buildings in Australia , 2022, Solar Energy.
[19] G. Cheraghian,et al. Effect of nano phase change materials on the cooling process of a triangular lithium battery pack , 2022, Journal of Energy Storage.
[20] M. Sharifpur,et al. Influence of using innovative turbulators on the exergy and energy efficacy of flat plate solar collector with DWCNTs-TiO2/water nanofluid , 2022, Sustainable Energy Technologies and Assessments.
[21] Saeed Alqaed. Effect of annual solar radiation on simple façade, double-skin facade and double-skin facade filled with phase change materials for saving energy , 2022, Sustainable Energy Technologies and Assessments.
[22] N. Abu‐Hamdeh,et al. A case study in the field of building sustainability energy: Performance enhancement of solar air heater equipped with PCM: A trade-off between energy consumption and absorbed energy , 2022, Journal of Building Engineering.
[23] M. Bayareh,et al. Experimental and numerical investigation on a novel spiral micromixer with sinusoidal channel walls , 2021, Chemical Engineering & Technology.
[24] J. Sapinski,et al. The transition to net zero energy (NZE) housing: An integrated approach to market, state, and other barriers , 2021, Cleaner and Responsible Consumption.
[25] Abdulwahab A. Alnaqi,et al. Usefulness of loading PCM into envelopes in arid climate based on Köppen–Geiger classification - Annual assessment of energy saving and GHG emission reduction , 2021, Journal of Energy Storage.
[26] Yanbin Li,et al. Shape-morphing materials and structures for energy-efficient building envelopes , 2021, Materials Today Energy.
[27] Wei Zhang,et al. Numerical Modeling of Response of CFRP–Concrete Interfaces Subjected to Fatigue Loading , 2021 .
[28] Shukui Liu,et al. Mechanical, chemical and hydrothermal activation for waste glass reinforced cement , 2021 .
[29] M. Heidari,et al. Net zero energy barns for industrial egg production: An effective sustainable intensification strategy? , 2021 .
[30] Ying Chen,et al. Flame-retardant and form-stable phase change composites based on MXene with high thermostability and thermal conductivity for thermal energy storage , 2021 .
[31] Wei Xu,et al. Indoor environmental quality and energy consumption real-time assessment: A field measurement of a nearly zero-energy building in cold region of China , 2021 .
[32] Hua Xu,et al. A 3D root system morphological and mechanical model based on L-Systems and its application to estimate the shear strength of root-soil composites , 2021 .
[33] Abdulwahab A. Alnaqi,et al. Energy-saving of building envelope using passive PCM technique: A case study of Kuwait City climate conditions , 2021 .
[34] M. Sharifpur,et al. Effects of Different Wall Shapes on Thermal-Hydraulic Characteristics of Different Channels Filled with Water Based Graphite-SiO2 Hybrid Nanofluid , 2021, Processes.
[35] G. Cheraghian,et al. Loading PCM Into Buildings Envelope to Decrease Heat Gain-Performing Transient Thermal Analysis on Nanofluid Filled Solar System , 2021, Frontiers in Energy Research.
[36] M. Jahangiri,et al. Comprehensive Investigation of Solar-Based Hydrogen and Electricity Production in Iran , 2021 .
[37] Yuan Luo,et al. Fatigue reliability evaluation of aging prestressed concrete bridge accounting for stochastic traffic loading and resistance degradation , 2021, Advances in Structural Engineering.
[38] Wei Zhang,et al. Mixed-Mode Debonding Behavior between CFRP Plates and Concrete under Fatigue Loading , 2021 .
[39] Weiwei Sun,et al. Microbial induced calcium carbonate precipitation study using Bacillus subtilis with application to self-healing concrete preparation and characterization , 2021 .
[40] Saeed Alqaed,et al. Challenging of using CuO nanoparticles in a flat plate solar collector- Energy saving in a solar-assisted hot process stream , 2021, Journal of the Taiwan Institute of Chemical Engineers.
[41] Rasool Kalbasi. Introducing a novel heat sink comprising PCM and air - Adapted to electronic device thermal management , 2021 .
[42] F. Xue,et al. Multi-factor analysis on thermal comfort and energy saving potential for PCM-integrated buildings in summer , 2021, Energy and Buildings.
[43] Wei Zhang,et al. Experimental study on circular steel tube-confined reinforced UHPC columns under axial loading , 2021 .
[44] Endong Wang,et al. Relationship model between surface strain of concrete and expansion force of reinforcement rust , 2021, Scientific Reports.
[45] Ahmed B. Khoshaim,et al. Efficacy of incorporating PCM into the building envelope on the energy saving and AHU power usage in winter , 2021 .
[46] Zuquan Jin,et al. Non-uniform model of relationship between surface strain and rust expansion force of reinforced concrete , 2021, Scientific Reports.
[47] Naiwei Lu,et al. Maximum Probabilistic and Dynamic Traffic Load Effects on Short-to-Medium Span Bridges , 2021 .
[48] Jawed Mustafa,et al. Thermally Driven Flow of Water in Partially Heated Tall Vertical Concentric Annulus , 2020, Entropy.
[49] P. Akishin,et al. Parametric analysis and design optimisation of PCM thermal energy storage system for space cooling of buildings , 2020 .
[50] Shady Attia,et al. Developing two benchmark models for nearly zero energy schools , 2020, Applied Energy.
[51] I. Pigliautile,et al. Microclimate mitigation for enhancing energy and environmental performance of Near Zero Energy Settlements in Italy , 2020 .
[52] M. Salimpour,et al. EXPERIMENTAL INVESTIGATION OF CONVECTIVE HEAT TRANSFER OF SINGLE AND MULTI-WALLED CARBON NANOTUBES/WATER FLOW INSIDE HELICAL ANNULI , 2020 .
[53] J. Mustafa,et al. Experimental and Numerical Analysis of Heat Transfer in a Tall Vertical Concentric Annular Thermo-siphon at Constant Heat Flux Condition , 2019 .
[54] V. Ismet Ugursal,et al. Development and analysis of strategies to facilitate the conversion of Canadian houses into net zero energy buildings , 2019, Energy Policy.
[55] Y. Bai,et al. Experimental investigation on shear behavior of steel beam-to-CFST column connections with irregular panel zone , 2018, Engineering Structures.
[56] Rajat Gupta,et al. Assessing energy use and overheating risk in net zero energy dwellings in UK , 2018 .
[57] Fabio Fatiguso,et al. Methodological framework for assessment of energy behavior of historic towns in Mediterranean climate , 2017 .
[58] S. A. Al-Sanea,et al. Optimum R-values of building walls under different climatic conditions in the Kingdom of Saudi Arabia , 2016 .
[59] F. Fathian. Predicting Global Solar Radiation using Genetic Algorithm (GA) , 2013 .
[60] M. N. A. Hawlader,et al. Diffuse, global and extra-terrestrial solar radiation for Singapore , 1984 .