The Experts below are selected from a list of 16734 Experts worldwide ranked by ideXlab platform

Xiaochen Guo - One of the best experts on this subject based on the ideXlab platform.

  • Thermal Insulation Performance of the Thermal Insulation Material of the Exterior Wall of the Port Building
    Journal of Coastal Research, 2019
    Co-Authors: Xiaochen Guo
    Abstract:

    ABSTRACT Guo, X., 2019. Thermal Insulation performance of the Thermal Insulation Material of the exterior wall of the port building. In: Guido-Aldana, P.A. and Mulahasan, S. (eds.), Advances in Wat...

  • Thermal Insulation Performance of the Thermal Insulation Material of the Exterior Wall of the Port Building
    Journal of Coastal Research, 2019
    Co-Authors: Xiaochen Guo
    Abstract:

    Guo, X., 2019. Thermal Insulation performance of the Thermal Insulation Material of the exterior wall of the port building. In: Guido-Aldana, P.A. and Mulahasan, S. (eds.), Advances in Water Resources and Exploration. Journal of Coastal Research, Special Issue No. 93, pp. 341–347. Coconut Creek (Florida), ISSN 0749-0208.The Thermal Insulation performance of the Thermal Insulation Material of the external wall of the port building is studied, and the optimum proportion of the heat-insulating property of the Material and the thickness of the heat-insulating layer of the Material is analyzed, and the construction of the invention provides a method for constructing a relationship model based on the self-correlation characteristic analysis of the Thermal Insulation performance of the outer wall Material of the port building and the thickness performance of the Thermal Insulation layer of the Material. The detailed experimental data is obtained to guide the design and construction of the external wall of the port building. Firstly, the Material property and structural model of the Thermal Insulation Material of the external wall of the port building are analyzed, then the calculation of the thickness of the Thermal Insulation Material of the external wall of the port building and the mathematical analysis of the Thermal resistance are carried out, and the Thermal resistance detection model for the design of the thickness change of the Thermal Insulation Material under different temperatures is given. And the test and the numerical calculation of the test piece are carried out. The test results show that the model can accurately analyze the Thermal Insulation performance of the Thermal Insulation Material of the external wall of the port building, the accuracy of the Thermal Insulation performance of the Thermal Insulation Material of the external wall of the port building is high, the construction cost is saved, and the Thermal Insulation performance of the Thermal Insulation Material of the external wall of the port building is improved.

Ome Kaynakli - One of the best experts on this subject based on the ideXlab platform.

  • a review of the economical and optimum Thermal Insulation thickness for building applications
    Renewable & Sustainable Energy Reviews, 2012
    Co-Authors: Ome Kaynakli
    Abstract:

    Abstract Energy conservation is an increasingly important issue for the residential sector. Therefore, attention towards the Thermal performance of building Materials, particularly Thermal Insulation systems for buildings, has grown in recent years. In this study, a literature review on determining the optimum thickness of the Thermal Insulation Material in a building envelope and its effect on energy consumption was carried out. The results, the optimization procedures and the economic analysis methods used in the studies were presented comparatively. Additionally, a practical application on optimizing the Insulation thickness was performed, and the effective parameters on the optimum value were investigated.

Xiaoyan Zhou - One of the best experts on this subject based on the ideXlab platform.

  • Development and performance evaluation of a new Thermal Insulation Material from rice straw using high frequency hot-pressing
    Energy and Buildings, 2015
    Co-Authors: Kangcheng Wei, Chenglong Lv, Zhenyu Dai, Minzhi Chen, Xiaoyan Zhou, Da Shen
    Abstract:

    A new Thermal Insulation Material made from rice straw (RSTIB) was developed using high frequency hot pressing. The goal of this study is to investigate the effect of high frequency heating, board density, particle size and ambient temperature on the properties of RSTIB. The results indicated that the optimum physical and mechanical properties of boards are obtained with a particle moisture content (MC) of 14%, a board density of 250 kg/m3, and an L-type particle size. Additionally, the Thermal Insulation boards had fairly low Thermal conductivity, ranging from 0.051 to 0.053 W/(m K). Comparison with conventional hot pressing confirmed that the pressing duration can be greatly shortened by high frequency hot pressing. The boards subjected to high frequency pressing had higher internal bonding strength (IB) values than the boards subjected to conventional hot pressing. As an environmentally friendly and renewable Material, RSTIB is of interest for energy saving purposes when it is used as building Insulation Material for walls or ceilings.

  • an environment friendly Thermal Insulation Material from cotton stalk fibers
    Energy and Buildings, 2010
    Co-Authors: Xiaoyan Zhou, Huaguan Li, Fei Zheng, Chenglong Lu
    Abstract:

    Abstract A new environment-friendly Thermal Insulation Material—binderless cotton stalk fiberboard (BCSF) made from cotton stalk fibers with no chemical additives was developed using high frequency hot-pressing. The goal of this paper was to investigate the effect of board density, fiber moisture content (MC) and pressing time on Thermal conductivity and mechanical properties of BCSF. The results showed that the board with a density of 150–450 kg/m3 had the Thermal conductivity values ranging from 0.0585 to 0.0815 W/m K, which was close to that of the expanded perlite and vermiculite within the same density range. The Thermal conductivity values had a strong linear correlation with the board density. The internal bonding strength (IBS) of boards was good at the relatively low-density level, which can be significantly improved with increasing the fiber MC and prolonging pressing time. The same trend was observed for modulus of rapture (MOR) and modulus of elasticity (MOE) of the boards. As an environment-friendly and renewable Material, the BCSF is particularly suitable for ceiling and wall applications to save energy.

Mehmet Akif Kara - One of the best experts on this subject based on the ideXlab platform.

  • an environmentally friendly Thermal Insulation Material from sunflower stalk textile waste and stubble fibres
    Construction and Building Materials, 2014
    Co-Authors: Hanifi Binici, Mustafa Eken, Mustafa Dolaz, Orhan Aksogan, Mehmet Akif Kara
    Abstract:

    Abstract Heating costs in the winter and cooling costs in the summer are very high. Building Insulation reduces heating costs in the winter and cooling costs in the summer. Although sunflower production in Turkey is significant, after the production the sunflower stem is a serious problem for farmers. Sunflower stems are cleaned, burned or used for temporary heating purposes. This type of use is causing serious problems to the environment. Sunflower stalks and cotton textile waste, such as stubble, cause serious environmental problems. To circumvent this problem, the present study puts forth an advantageous use of those waste Materials for Insulation of buildings. In Turkey there are a lot of both of the aforementioned Materials. As the binder for those two Materials epoxy was used. As samples, 30  × 40  × 2.5 cm rectangular blocks were prepared under different pressures. The samples were tested for their mechanical properties and the coefficients of Thermal conductivity, as well. The results obtained satisfied the Turkish Standard TS 805 EN 601. Thus, the method proposed in this study solves two industrial problems at the same time. A useful construction Material is produced while some waste Materials causing environmental problems are warded off.

Da Shen - One of the best experts on this subject based on the ideXlab platform.

  • Development and performance evaluation of a new Thermal Insulation Material from rice straw using high frequency hot-pressing
    Energy and Buildings, 2015
    Co-Authors: Kangcheng Wei, Chenglong Lv, Zhenyu Dai, Minzhi Chen, Xiaoyan Zhou, Da Shen
    Abstract:

    A new Thermal Insulation Material made from rice straw (RSTIB) was developed using high frequency hot pressing. The goal of this study is to investigate the effect of high frequency heating, board density, particle size and ambient temperature on the properties of RSTIB. The results indicated that the optimum physical and mechanical properties of boards are obtained with a particle moisture content (MC) of 14%, a board density of 250 kg/m3, and an L-type particle size. Additionally, the Thermal Insulation boards had fairly low Thermal conductivity, ranging from 0.051 to 0.053 W/(m K). Comparison with conventional hot pressing confirmed that the pressing duration can be greatly shortened by high frequency hot pressing. The boards subjected to high frequency pressing had higher internal bonding strength (IB) values than the boards subjected to conventional hot pressing. As an environmentally friendly and renewable Material, RSTIB is of interest for energy saving purposes when it is used as building Insulation Material for walls or ceilings.