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The clouds of Jupiter: Results of the Galileo Jupiter Mission Probe Nephelometer Experiment

机译:木星的云:伽利略木星任务探测器浊度仪实验的结果

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The results of the nephelometer experiment conducted aboard the probe of the Galileo mission to Jupiter are presented. The tenuous clouds and sparse particulate matter in the relatively particle-free 5-mu m "hot spot" region of the probe's descent were documented from about 0.46 bar to about 12 bars. Three regions of apparent coherent structure were noted, in addition to many indications of extremely small particle concentrations along the descent path. From the first valid measurement at about 0.46 bar down to about 0.55 bar, a feeble decaying lower portion of a cloud, corresponding with the predicted ammonia particle cloud, was encountered. A denser, but still very modest, particle structure was present in the pressure regime extending from about 0.76 bar to a distinctive base at 1.34 bars and is compatible with the expected ammonium hydrosulfide cloud. No massive water cloud was encountered, although below the second structure, a small, vertically thin layer at about 1.65 bars may be detached from the cloud above, but may also be water condensation, compatible with reported measurements of water abundance from other Galileo Mission experiments. A third small signal region, extending from about 1.9 to 4.5 bars, exhibited quite weak but still distinctive structure and, although the identification of the light scatterers in this region is uncertain, may also be a water cloud, perhaps associated with lateral atmospheric motion and/or reduced to a small mass density by atmospheric subsidence or other causes. Rough descriptions of the particle size distributions and cloud properties in these regions have been derived, although they may be imprecise because of the small signals and experimental difficulties. These descriptions document the small number densities of particles, the moderate particle sizes, generally in the slightly submicron to few micron range, and the resulting small optical depths, mass densities due to particles, column particle number loading, and column mass loading in the atmosphere encountered by the Galileo probe during its descent. [References: 62]
机译:给出了在伽利略号对木星飞行任务探测器上进行的浊度计实验的结果。记录到探针下降的相对无颗粒的5微米“热点”区域中的稀疏云朵和稀疏颗粒物质的记录范围为大约0.46 bar至大约12 bar。除了沿下降路径的极小颗粒浓度的许多迹象外,还注意到了三个明显相干结构的区域。从大约0.46 bar的第一次有效测量值下降到大约0.55 bar,遇到了云的衰弱的下部,对应于预测的氨颗粒云。在压力范围内存在一个密度更高但仍非常适中的颗粒结构,该结构从约0.76 bar延伸至1.34 bar处的独特碱,并且与预期的硫化氢铵云兼容。没有遇到大块的水云,尽管在第二个结构下方,大约1.65巴的垂直垂直薄层可能会从上方的云中分离出来,但也可能是水凝结,与其他Galileo Mission实验报告的水丰度测量结果兼容。第三个小信号区域从大约1.9巴延伸到4.5巴,表现出相当微弱但仍与众不同的结构,尽管不确定该区域的光散射体识别,但也可能是水云,可能与横向大气运动有关。 /或由于大气沉降或其他原因而降低到较小的质量密度。尽管由于信号小和实验困难而可能不精确,但已对这些区域的粒度分布和云特性进行了粗略的描述。这些描述记录了少量的颗粒密度,中等的粒径(通常在亚微米至几微米范围内),以及由此产生的较小的光学深度,由于颗粒引起的质量密度,色谱柱上的颗粒数负载和大气中的色谱柱质量负载伽利略探测器在下降过程中遇到的情况。 [参考:62]

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