Investigating the Effect of Gamma-ray Burst on the Agricultural Soil Temperature

J. N. Aniezi, R. Obodo, J. N. Egbucha, A. C. Obike
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Abstract

Gamma-ray bursts (GRBs) are immensely energetic explosions that have been observed in distant galaxies. This signatures from distant stars helps in carrying out spatial mapping of physical parameters related to soil properties, such as soil temperature. In investigating the effect of gamma-ray burst on the agricultural soil temperature, we used gamma-ray bursts (GRBs) data collected for some period of time to carry out some estimations. Linear regression analysis was carried out using the soil temperature  and the GRBs arrival time, . There is an exponential relationship between temperature and time as the soil is heated. This depicts an exponential curve that was fitted into a line; and the slope at any point on the line gives the rate of cooling,  which is a determining factor for the time it takes for the soil to adjust between its high and low temperature. The thermal flux which relates to soil temperature is expected to decay at late times. The cooling rate reflects the degree of fall of temperature with time; and the higher the cooling rate, the shorter the time it takes for the soil to readjust its temperature between the upper and the lower ranges of thermal states. Thus the role of gamma-ray bursts in the management of agro-ecosystem is now becoming a reality.
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射线暴对农业土壤温度影响的研究
伽马射线暴(GRBs)是在遥远星系中观测到的能量极大的爆炸。来自遥远恒星的这些特征有助于进行与土壤性质(如土壤温度)相关的物理参数的空间映射。为了研究伽玛暴对农业土壤温度的影响,我们利用一段时间内采集的伽玛暴数据进行了估算。利用土壤温度与grb到达时间进行线性回归分析。土壤受热时,温度与时间呈指数关系。它描绘了一条指数曲线,它被拟合成一条直线;这条线上任何一点的坡度都表示冷却速度,这是土壤在高温和低温之间调整所需时间的决定性因素。与土壤温度有关的热通量在后期预计会衰减。冷却速率反映了温度随时间下降的程度;降温速率越高,土壤在热态的上下限之间重新调整温度所需的时间就越短。因此,伽马射线暴在农业生态系统管理中的作用现在正在成为现实。
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