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液化石油气喷射火灾热辐射估算方法研究 被引量:3
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作者 康青春 孙沛 +1 位作者 王淮斌 李玉 《中国安全科学学报》 CAS CSCD 北大核心 2013年第11期16-21,共6页
为减少火灾的热辐射伤害并制定合理的作战、疏散方案,研究液化石油气(LPG)喷射火灾的热辐射分布问题,得出既满足部队实战要求又简单快捷的火灾热辐射计算公式。以火场上便于侦查的参数为出发点,利用试验研究与数值分析相结合的方法,在... 为减少火灾的热辐射伤害并制定合理的作战、疏散方案,研究液化石油气(LPG)喷射火灾的热辐射分布问题,得出既满足部队实战要求又简单快捷的火灾热辐射计算公式。以火场上便于侦查的参数为出发点,利用试验研究与数值分析相结合的方法,在试验装置设计基础上,分别拟合热辐射通量与火焰宽度、高度和距离之间的关系,通过多元回归分析的方法得到热辐射通量的简化计算公式。试验测试和模型对比结果表明,虽然简化计算公式与实测值及其他计算模型存在一定的偏差,但差值在7%以内,能满足部队实战需求;公式中的变量易通过火场侦查得到,便于部队实际应用。 展开更多
关键词 液化石油气(LPG) 喷射火 热辐射估算 变因素试验 数据拟合
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An improved algorithm to estimate the surface soil heat flux over a heterogeneous surface: A case study in the Heihe River Basin 被引量:1
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作者 LI NaNa JIA Li LU Jing 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第7期1169-1181,共13页
Surface soil heat flux(G0) is an indispensable component of the surface energy balance and plays an important role in the estimation of surface evapotranspiration(ET). This study calculated G0 in the Heihe River Basin... Surface soil heat flux(G0) is an indispensable component of the surface energy balance and plays an important role in the estimation of surface evapotranspiration(ET). This study calculated G0 in the Heihe River Basin based on the thermal diffusion equation, using the observed soil temperature and moisture profiles, with the aim to analyze the spatial-temporal variations of G0 over the heterogeneous area(with alpine grassland, farmland, and forest). The soil ice content was estimated by the difference in liquid soil water content before and after the melting of the frozen soil and its impact on the calculation of G0 was further analyzed. The results show that:(1) the diurnal variation of G0 is obvious under different underlying surfaces in the Heihe River Basin, and the time when the daily maximum value of G0 occurs is a few minutes to several hours earlier than that of the net radiation flux, which is related to the soil texture, soil moisture, soil thermal properties, and the vegetation coverage;(2) the net radiation flux varies with season and reaches the maximum in summer and the minimum in winter, whereas G0 reaches the maximum in spring rather than in summer, because more vegetation in summer hinders energy transfer into the soil;(3) the proportions of G0 to the net radiation flux are different with seasons and surface types, and the mean values in January are 25.6% at the Arou site, 22.9% at the Yingke site and 4.3% at the Guantan site, whereas the values in July are 2.3%, 1.6% and 0.3%, respectively; and(4) G0 increases when the soil ice content is included in thermal diffusion equation, which improves the surface energy balance closure by 4.3%. 展开更多
关键词 surface soil heat flux soil ice content surface energy balance heterogeneous surfaces
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