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Determination of blast-induced ground vibration equations for rocks using mechanical and geological properties 被引量:16
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作者 Ranjan Kumar Deepankar Choudhury Kapilesh Bhargava 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2016年第3期341-349,共9页
In the recent decades, effects of blast loads on natural and man-made structures have gained considerable attention due to increase in threat from various man-made activities. Site-specific empirical relationships for... In the recent decades, effects of blast loads on natural and man-made structures have gained considerable attention due to increase in threat from various man-made activities. Site-specific empirical relationships for calculation of blast-induced vibration parameters like peak particle velocity (PPV) and peak particle displacement (PPD) are commonly used for estimation of blast loads in design. However, these relation- ships are not able to consider the variation in rock parameters and uncertainty of in situ conditions. In this paper, a total of 1089 published blast data of various researchers in different rock sites have been collected and used to propose generalized empirical model for PPV by considering the effects of rock parameters like unit weight, rock quality designation (ROD), geological strength index (GSI), and uniaxial compressive strength (UCS). The proposed PPV model has a good correlation coefficient and hence it can be directly used in prediction of blast-induced vibrations in rocks. Standard errors and coefficient of correlations of the predicted blast-induced vibration parameters are obtained with respect to the observed field data. The proposed empirical model for PPV has also been compared with the empirical models available for blast vibrations predictions given by other researchers and found to be in good agreement with specific cases. 展开更多
关键词 Blast loadsEmpirical equationsRock quality designation (RQD)unit weightPeak particle velocity (PPV)Uniaxial compressive strength (UCS)Geological strength index (GSI)
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Determination of a Vapor Compression Refrigeration System Refrigerant Charge
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作者 Yang Chun-Xin Dang Chao-Bin (Institute of Air Conditioning and Refrigeration Engineering, BeiJing University of Aeronautics and Astronautics, Beijing 100083, China) 《Journal of Thermal Science》 SCIE EI CAS CSCD 1995年第3期162-168,共7页
A physical model is established in this paper to describe the heat transfer and two phase flow of a refrigerant in the evaporator and condenser of a vapor compression refrigeration system. The model is then used to de... A physical model is established in this paper to describe the heat transfer and two phase flow of a refrigerant in the evaporator and condenser of a vapor compression refrigeration system. The model is then used to determine the refrigerant charge in vapor compression units. The model is used for a sensitivity analysis to determine the effect that yaring design parameters on the refrigerant charge. The model is also used to evaluate the effect of refrigerant charge and the thermal physical properties on the refrigeration cycle. The predicted value of the refrigerant charge and experimental data agree well.The model and the method presented in this paper could be used to design vapour compression units such as domestic refrigerators and air conditioners. 展开更多
关键词 Vapour compression refrigeration units two phase now heat transfer refrigerant charge physical model.
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