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Lunar weather measurements at three Apollo sites 1969-1976

机译:1969-1976年三个阿波罗地点的月球天气预报

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The first lunar weather stations, matchbox-sized, 270 g Apollo Dust Detector Experiments about 100 cm above the surface of the Moon near Apollo 12,14, and 15 landing sites, measured dust accretion, charged particle radiation, and temperature changes—three environmental factors proved during Apollo to affect technical systems deployed on the Moon. Degradation of seven horizontal solar cells was measured every lunar daytime from 1969 to 1976. The anomalously intense August 1972 solar particle event (SPE) degraded three covered cells by less than 1%, while two cells desensitized by intense preirradiation showed no measurable effects. Although independent studies estimated the long-term fluence bombarding the cells was less than half that of the August SPE, long-term gradual degradation of five covered cells (normalized to 2000 days) was an order of magnitude greater, between 4% and 10%. If the long-term effects were totally caused by dust, with articulated caveats including simulated (maria) Minnesota Lunar Simulant-1 dust particles with diameters 20 to 38 μm, this provides the first direct measured long-term net accretion of dust with an upper limit of order 100 μg cmyr, equivalent to a layer 1 mm thick in 1000 years, but it may be significantly less. Two bare cells were abruptly degraded by 7% during the August SPE, however long-term they measured additional damage of 29% and 24%, indicating a long-neglected suite of low-energy radiation, posing risks for bare materials exposed on the surface of the Moon.
机译:第一个月球气象站,火柴盒大小的270克阿波罗粉尘探测器在距阿波罗12、14和15个着陆点附近的月球表面约100厘米处进行实验,测量了粉尘的积聚,带电粒子辐射和温度变化-三种环境在阿波罗期间证明的因素会影响部署在月球上的技术系统。在1969年至1976年的每个农历日期间,均测量了七个水平太阳能电池的退化。异常强烈的1972年8月太阳粒子事件(SPE)使三个被覆盖的电池的降解率不到1%,而两个被强烈的预辐照减敏的电池没有可测量的作用。尽管独立研究估计轰击细胞的长期通量少于八月SPE的一半,但五个被覆盖细胞的长期逐步降解(标准化为2000天)却高出一个数量级,介于4%和10%之间。如果长期影响是完全由尘埃引起的,则包括诸如明尼苏达州明尼苏达州Lunar Simulant-1尘埃颗粒(直径为20至38μm)的模拟警告在内的明确警告,这将提供第一个直接测量的尘埃的长期净净值。极限为100μgcmyr,相当于1000年厚度为1 mm的层,但可能会大大减少。在八月份的SPE中,两个裸电池突然降解了7%,但是长期测量它们会分别造成29%和24%的损坏,这表明长期以来人们忽略了一系列低能辐射,这对裸露在表面的材料构成了风险月球。

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