The Experts below are selected from a list of 93 Experts worldwide ranked by ideXlab platform

J. Golob - One of the best experts on this subject based on the ideXlab platform.

  • New approach to calculate the probability of ignition.
    2011
    Co-Authors: J. Šrekl, J. Golob
    Abstract:

    The probabilistic approach to the evaluation of Fire hazard and the effectiveness of Fire-Precaution measures enables a rational response to the randomness of Fire outbreaks. This article employs the statistical analysis methods to elucidate the causes for the ignition of Fire on a random sample of industrial buildings in the Republic of Slovenia. The analyses are based on the Structural Equation Modeling (SEM), which is a well established and important statistical analysis technique in the fields of social science, biology, psychology and medicine, but hitherto rarely applied in safety research. The results of the study demonstrate that for the analyzed random sample of industrial buildings the frequency of Fire outbreaks statistically significantly depends only on the presence and the probability of exposure to the heat sources (flames, sparks, and hot surfaces), but does not significantly depend on the available quantity of flammable materials within the industrial structure. Highlights: A significant correlations exist between the number of Fire outbreaks and the exposition of the source ignition; The longer work ours, especially during the critical periods of day, also has a significant influence the probability of Fire outbreaks; The boundary function gives the necessary length of monthly exposition of source ignition in order to expected number of Fire outbreaks.

  • New approach to calculate the probability of ignition
    Journal of Loss Prevention in The Process Industries, 2011
    Co-Authors: J. Šrekl, J. Golob
    Abstract:

    Abstract The probabilistic approach to the evaluation of Fire hazard and the effectiveness of Fire-Precaution measures enables a rational response to the randomness of Fire outbreaks. This article employs the statistical analysis methods to elucidate the causes for the ignition of Fire on a random sample of industrial buildings in the Republic of Slovenia. The analyses are based on the Structural Equation Modeling (SEM), which is a well established and important statistical analysis technique in the fields of social science, biology, psychology and medicine, but hitherto rarely applied in safety research. The results of the study demonstrate that for the analyzed random sample of industrial buildings the frequency of Fire outbreaks statistically significantly depends only on the presence and the probability of exposure to the heat sources (flames, sparks, and hot surfaces), but does not significantly depend on the available quantity of flammable materials within the industrial structure.

  • Statistical Modeling in Fire-ignition Hazard Evaluation
    Chemical and Biochemical Engineering Quarterly, 2009
    Co-Authors: J. Šrekl, J. Golob
    Abstract:

    The probabilistic approach to the evaluation of Fire hazard and the effectiveness of Fire-Precaution measures enables a rational response to the randomness of Fire outbreaks. This article employs the statistical analysis methods to elucidate the causes for the ignition of Fire on a random sample of industrial buildings in the Republic of Slovenia. The analyses are based on the Structural Equation Modeling (SEM), which is a well-established and important statistical analysis technique in the fields of biology, psychology and medicine, but hitherto rarely applied in safety research. The results of the study demonstrate that for the analyzed random sample of industrial buildings the frequency of Fire outbreaks statistically significantly depends only on the presence and the probability of exposition to the heat sources (flames, sparks, and hot surfaces), but does not significantly depend on the available quantity of flammable materials within the industrial structure.

J. Šrekl - One of the best experts on this subject based on the ideXlab platform.

  • New approach to calculate the probability of ignition.
    2011
    Co-Authors: J. Šrekl, J. Golob
    Abstract:

    The probabilistic approach to the evaluation of Fire hazard and the effectiveness of Fire-Precaution measures enables a rational response to the randomness of Fire outbreaks. This article employs the statistical analysis methods to elucidate the causes for the ignition of Fire on a random sample of industrial buildings in the Republic of Slovenia. The analyses are based on the Structural Equation Modeling (SEM), which is a well established and important statistical analysis technique in the fields of social science, biology, psychology and medicine, but hitherto rarely applied in safety research. The results of the study demonstrate that for the analyzed random sample of industrial buildings the frequency of Fire outbreaks statistically significantly depends only on the presence and the probability of exposure to the heat sources (flames, sparks, and hot surfaces), but does not significantly depend on the available quantity of flammable materials within the industrial structure. Highlights: A significant correlations exist between the number of Fire outbreaks and the exposition of the source ignition; The longer work ours, especially during the critical periods of day, also has a significant influence the probability of Fire outbreaks; The boundary function gives the necessary length of monthly exposition of source ignition in order to expected number of Fire outbreaks.

  • New approach to calculate the probability of ignition
    Journal of Loss Prevention in The Process Industries, 2011
    Co-Authors: J. Šrekl, J. Golob
    Abstract:

    Abstract The probabilistic approach to the evaluation of Fire hazard and the effectiveness of Fire-Precaution measures enables a rational response to the randomness of Fire outbreaks. This article employs the statistical analysis methods to elucidate the causes for the ignition of Fire on a random sample of industrial buildings in the Republic of Slovenia. The analyses are based on the Structural Equation Modeling (SEM), which is a well established and important statistical analysis technique in the fields of social science, biology, psychology and medicine, but hitherto rarely applied in safety research. The results of the study demonstrate that for the analyzed random sample of industrial buildings the frequency of Fire outbreaks statistically significantly depends only on the presence and the probability of exposure to the heat sources (flames, sparks, and hot surfaces), but does not significantly depend on the available quantity of flammable materials within the industrial structure.

  • Statistical Modeling in Fire-ignition Hazard Evaluation
    Chemical and Biochemical Engineering Quarterly, 2009
    Co-Authors: J. Šrekl, J. Golob
    Abstract:

    The probabilistic approach to the evaluation of Fire hazard and the effectiveness of Fire-Precaution measures enables a rational response to the randomness of Fire outbreaks. This article employs the statistical analysis methods to elucidate the causes for the ignition of Fire on a random sample of industrial buildings in the Republic of Slovenia. The analyses are based on the Structural Equation Modeling (SEM), which is a well-established and important statistical analysis technique in the fields of biology, psychology and medicine, but hitherto rarely applied in safety research. The results of the study demonstrate that for the analyzed random sample of industrial buildings the frequency of Fire outbreaks statistically significantly depends only on the presence and the probability of exposition to the heat sources (flames, sparks, and hot surfaces), but does not significantly depend on the available quantity of flammable materials within the industrial structure.

Zhang Jianhua - One of the best experts on this subject based on the ideXlab platform.

Bie Xiao-fe - One of the best experts on this subject based on the ideXlab platform.

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

  • Analysis and prevention of electrical Fires
    Journal of Safety Science and Technology, 2011
    Co-Authors: Li Da-yong
    Abstract:

    Electrical Fires are mainly induced by electrical failure,and it causes great loss to social production and people's life safety.In this paper,the process,causes and characteristics of electrical Fire were analyzed,and the hazard of electrical Fire was pointed out.The importance of attaching importance to prevention work of electrical Fire was illustrated,and the countermeasures of electrical Fire prevention were put forward,such as establishing and improving the organization and institution,conducting the popularization and training of electric Fire prevention knowledge correctly selecting electrical facilities,enhancing the supervision and management of electrical products and engineering quality,cleaning the energized electrical equipment places,strengthening the Fire prevention of low voltage line,reinforcing the prevention of lightning Fires,carrying out the Fire Precaution induced by higher harmonic,completing the electrical Fire pr ecaution of small resistance grounding system in 10KV power grid,and establishing the automatic monitoring and warning system and network of electrical Fire.It will play a very active role in guiding the electrical Fire prevention and restraining the occurrence of electrical Fire.