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Effects of orbital decay on satellite-derived lower-tropospheric temperature trends

机译:轨道衰减对源自卫星的低对流层温度趋势的影响

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摘要

The 17-year lower-tropospheric temperature record derived from the satellite Microwave Sounding Unit (MSU) shows a global cooling trend, from 1979 to 1995, of -0.05 K per decade at an altitude of about 3.5 km (refs 4, 5). Air temperatures measured at the Earth's surface, in contrast, have risen by approximately +0.13 K per decade over the same period. The two temperature records are derived from measurements of different physical parameters, and thus are not directly comparable. In fact, the lower stratosphere is cooling substantially (by about -0.5 K per decade), so the warming trend seen at the surface is expected to diminish with altitude and change into a cooling trend at some point in the troposphere. Even so, it has been suggested that the cooling trend seen in the satellite data is excessive. The difficulty in reconciling the information from these different sources has sparked a debate in the climate community about possible instrumental problems and the existence of global warming. Here we identify an artificial cooling trend in the satellite-derived temperature series caused by previously neglected orbital-decay effects. We find a new, corrected estimate of +0.07 K per decade for the MSU-based temperature trend, which is in closer agreement with surface temperatures. We also find that the reported cooling of the lower troposphere, relative to the middle troposphere, is another artefact caused by uncor-rected orbital-decay effects.
机译:来自卫星微波探测单元(MSU)的17年对流层较低温度记录显示,从1979年至1995年,全球海拔大约3.5 km的降温趋势为每十年-0.05 K(参考文献4、5)。相反,在同一时期,在地球表面测得的空气温度每十年增加了约+0.13K。这两个温度记录来自不同物理参数的测量结果,因此不能直接比较。实际上,较低的平流层实际上正在冷却(每十年大约减少-0.5 K),因此,预计在地面看到的变暖趋势会随着海拔的升高而减小,并在对流层的某个点变成变冷趋势。即使这样,也已经暗示在卫星数据中看到的冷却趋势过大。协调来自这些不同来源的信息的困难引发了气候界关于可能的仪器问题和全球变暖的存在的辩论。在这里,我们确定了由先前忽略的轨道衰减效应引起的人造卫星温度序列中的人工冷却趋势。对于基于MSU的温度趋势,我们发现每十年+0.07 K的新的校正估计值与表面温度更接近。我们还发现,相对于中层对流层,对流层下层的冷却是由未校正的轨道衰减效应引起的另一种伪影。

著录项

  • 来源
    《Nature》 |1998年第6694期|p.661-664|共4页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

  • 入库时间 2022-08-18 00:57:42

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