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Physical aspects of the greenhouse effect and global warming

机译:温室效应和全球变暖的物理方面

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According to the simplest model of the earth's radiative balance, global warming will occur with certainty as humankind increases its production and consumption of nonsolar energy. This prediction is revisited, using a broader model that allows the greenhouse effect to be considered. The new model predicts a global warming of Delta T-E =(114 K)epsilon, where epsilon is the rate of surface energy release in units of the average incident solar radiation, 342 W m(-2), and Delta T-E is the average temperature rise at the earth's surface. Present values of these quantities, excluding geothermal sources, are epsilon = 0.69 x 10(-4) and Delta T-E = 7.9 mK. The model assigns a small number of optical parameters to the atmosphere and surface and qualifies the simple warming prediction: It is rigorous only if parameters other than epsilon are unchanged. The model is not complex and should serve as an aid to an elementary understanding of global warming. (C) 1999 American Association of Physics Teachers. [References: 35]
机译:根据地球辐射平衡的最简单模型,随着人类增加其非太阳能能量的产生和消耗,全球变暖必将发生。使用更广泛的模型重新考虑了这一预测,该模型可以考虑温室效应。新模型预测了Delta TE =(114 K)epsilon的全球变暖,其中epsilon是表面能量释放的速率,单位为平均入射太阳辐射342 W m(-2),而Delta TE是平均温度在地球表面上升。这些量的当前值(不包括地热源)为epsilon = 0.69 x 10(-4)和Delta T-E = 7.9 mK。该模型为大气和地面分配了少量的光学参数,并验证了简单的变暖预测:仅当ε以外的参数保持不变时,该模型才是严格的。该模型并不复杂,应该有助于基本了解全球变暖。 (C)1999年美国物理教师协会。 [参考:35]

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