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Anthropogenic Heat Release into the Environment

机译:人为热量释放到环境中

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This work is intended to systematically study an inventory of the anthropogenic heat produced. This research strives to present a better estimate of the energy generated by humans and human activities, and compare this estimate to the significant energy quantity with respect to climate change. Because the Top of Atmosphere (TOA) net energy flux was found to be 0.85±0.15 W/m~2 the planet is out of energy balance, as studied by the group from NASA in 2005. The Earth is estimated to gain 431 TW from this energy imbalance. This number is the significant heat quantity to consider when studying global climate change, and not the 78,300 TW, the absorbed part of the primary solar radiation reaching the Earth's surface, as commonly cited and used at present in the literature. Based on energy supplied to the boilers (in the Rankine cycle) of at least 13 TW, body energy dissipated by 7 billion people and their domestic animals, the value of the total world anthropogenic heat production rate is 15.26 TW or 3.5% of the energy gain by the Earth. Based on world energy consumption and the energy dissipated by 7 billion people and their domestic animals, the value of the total world anthropogenic heat production rate is 19.7 TW or about 5% of the energy gain by the Earth. These numbers are significantly different from 13 TW. More importantly, the figures are 3.5 to 5% of the net energy gained by the Earth, and hence significant. The quantity is not 0.017% of the absorbed part of the main solar radiation reaching the Earth's surface and negligible.
机译:这项工作旨在系统地研究所产生的人为热量的清单。这项研究致力于更好地估计人类和人类活动产生的能量,并将该估计值与针对气候变化的大量能量进行比较。根据NASA小组在2005年的研究,由于发现大气层顶部(TOA)的净能量通量为0.85±0.15 W / m〜2,因此行星失去了能量平衡。据估计,地球从中获得的能量为431 TW这种能量失衡。这个数字是研究全球气候变化时要考虑的重要热量,而不是文献中当前经常引用和使用的78,300 TW,即到达地球表面的主要太阳辐射的吸收部分。根据供应给锅炉的能量(至少在兰金循环中)至少13 TW,人体能量消耗了70亿人及其家畜,全世界人为热量总生产率的价值为15.26 TW或能量的3.5%通过地球获得。根据世界能源消耗和70亿人及其家畜的消散能量,世界人为热量总生产率的价值为19.7 TW,约占地球能量获取的5%。这些数字与13 TW明显不同。更重要的是,这些数字是地球获得的净能量的3.5%至5%,因此意义重大。该数量不是到达地球表面的主要太阳辐射吸收部分的0.017%,可以忽略不计。

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