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首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >The spectral albedo of sea ice and salt crusts on the tropical ocean of Snowball Earth: II. Optical modeling
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The spectral albedo of sea ice and salt crusts on the tropical ocean of Snowball Earth: II. Optical modeling

机译:雪球地球热带海洋上的海冰和盐结壳光谱反照率:II。光学建模

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摘要

During the Snowball Earth events of the Neoproterozoic, tropical regions of the ocean could have developed a precipitated salt lag deposit left behind by sublimating sea ice. The major salt would have been hydrohalite, NaCl?2H_2O. The crystals in such a deposit can be small and highly scattering, resulting in an allwave albedo similar to that of snow. The snow-free sea ice from which such a crust could develop has a lower albedo, around 0.5, so the development of a crust would substantially increase the albedo of tropical regions on Snowball Earth. Hydrohalite crystals are much less absorptive than ice in the nearinfrared part of the solar spectrum, so their presence at the surface would increase the overall albedo as well as altering its spectral distribution. In this paper, we use laboratory measurements of the spectral albedo of a hydrohalite lag deposit, in combination with a radiative transfer model, to infer the inherent optical properties of hydrohalite as functions of wavelength. Using this result, we model mixtures of hydrohalite and ice representing both artificially created surfaces in the laboratory and surfaces relevant to Snowball Earth. The model is tested against sequences of laboratory measurements taken during the formation and the dissolution of a lag deposit of hydrohalite. We present a parameterization for the broadband albedo of cold, sublimating sea ice as it forms and evolves a hydrohalite crust, for use in climate models of Snowball Earth.
机译:在新元古代的雪球地球事件期间,海洋的热带地区可能会因海冰升华而留下盐沉淀沉积物。主要的盐应该是水卤石,NaCl 2 H 2O。这种沉积物中的晶体可能很小且高度分散,导致类似于雪的全波反照率。可以形成这种地壳的无雪海冰的反照率较低,约为0.5,因此,地壳的发展将大大增加雪球地球上热带地区的反照率。在太阳光谱的近红外部分,水卤石晶体的吸收性比冰低得多,因此,它们在表面的存在会增加整体反照率并改变其光谱分布。在本文中,我们利用实验室测量的水卤石滞后矿床的光谱反照率,结合辐射转移模型,推断出水卤石固有的光学性质与波长的函数关系。使用此结果,我们可以模拟代表实验室中人工创建的表面以及与Snowball Earth相关的表面的水卤石和冰的混合物。针对水卤石滞后沉积物的形成和溶解过程中采取的实验室测量序列对模型进行了测试。我们为宽带冰反射率提供了参数化参数,该宽带反射率是在冰雪形成和演化出水卤石结壳时将其升华的海冰,用于雪球地球气候模型。

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