首页> 外文学位 >Planetary Geological Science and Aerospace Systems Engineering Applications of Thermal Infrared Remote Sensing for Earth, Mars, and the Outer Bodies
【24h】

Planetary Geological Science and Aerospace Systems Engineering Applications of Thermal Infrared Remote Sensing for Earth, Mars, and the Outer Bodies

机译:地球,火星和外部物体的热红外遥感的行星地质科学和航空航天系统工程应用

获取原文
获取原文并翻译 | 示例

摘要

Many planetary science missions study thermophysical properties of surfaces using infrared spectrometers and infrared cameras. Thermal inertia is a frequently derived thermophysical property that quantifies the ability for heat to exchange through planetary surfaces.;To conceptualize thermal inertia, the diffusion equation analogies are extended using a general effusivity term: the square root of a product of conductivity and capacity terms. A hypothetical thermal inductance was investigated for diurnal planetary heating. The hyperbolic heat diffusion equation was solved to derive an augmented thermal inertia. The hypothetical thermal inductance was modeled with negligible effect on Mars.;Extending spectral performance of infrared cameras was desired for colder bodies in the outer solar system where peak infrared emission is at longer wavelengths. The far-infrared response of an infrared microbolometer array with a retrofitted diamond window was determined using an OSIRIS-REx ---OTES interferometer. An instrument response function of the diamond interferometer-microbolometer system shows extended peak performance from 15 microm out to 20 microm and 40% performance to at least 30 microm. The results are folded into E-THEMIS for the NASA flagship mission: Europa Clipper.;Infrared camera systems are desired for the expanding smallsat community that can inherit risk and relax performance requirements. The Thermal-camera for Exploration, Science, and Imaging Spacecraft (THESIS) was developed for the Prox-1 microsat mission. THESIS, incorporating 2001 Mars Odyssey---THEMIS experience, consists of an infrared camera, a visible camera, and an instrument computer. THESIS was planned to provide images for demonstrating autonomous proximity operations between two spacecraft, verifying deployment of the Planetary Society's LightSail-B, and conducting remote sensing of Earth. Prox-1 ---THESIS was selected as the finalist for the competed University Nanosatellite Program-7 and was awarded a launch on the maiden commercial SpaceX Falcon Heavy. THESIS captures 8--12 microm IR images with 100 mm optics and RGB color images with 25 mm optics. The instrument computer was capable of instrument commanding, automatic data processing, image storage, and telemetry recording. The completed THESIS has a mass of 2.04 kg, a combined volume of 3U, and uses 7W of power. THESIS was designed, fabricated, integrated, and tested in ASU's 100K clean lab.
机译:许多行星科学任务使用红外光谱仪和红外热像仪研究表面的热物理性质。热惯性是一种经常衍生的热物理性质,它量化了热量在行星表面之间交换的能力。为了概念化热惯性,扩散方程式的类推使用一般的效率系数项进行扩展:电导率和电容项乘积的平方根。对昼夜行星加热研究了一种假设的热电感。求解双曲热扩散方程,以得出增加的热惯性。假设的热电感对火星的影响可以忽略不计;对于在峰值红外发射波长较长的外部太阳系中较冷的物体,需要红外摄像机具有更好的光谱性能。使用OSIRIS-REx --- OTES干涉仪确定了带有改装金刚石窗口的红外微辐射热计阵列的远红外响应。金刚石干涉仪-测辐射热仪系统的仪器响应功能显示出峰值性能从15微米扩展到20微米,而40%的性能扩展到至少30微米。结果被折叠到E-THEMIS中,用于NASA的旗舰任务:Europa Clipper 。;红外摄像机系统是不断扩大的smallsat社区所需要的,它可以继承风险并放宽对性能的要求。勘探,科学和成像航天器的热像仪(THESIS)是为Prox-1微卫星任务开发的。结合2001年火星奥德赛-THEMIS的经验,THESIS由红外摄像机,可见摄像机和仪表计算机组成。 THESIS计划提供图像,以展示两个航天器之间的自动近距离操作,验证行星学会的LightSail-B的部署以及对地球进行遥感。 Prox-1 --- THESIS被选为竞争激烈的University Nanosatellite Program-7的决赛入围者,并获得了首次商业化SpaceX Falcon Heavy的发射权。 THESIS用100毫米光学元件捕获8--12微米IR图像,用25 mm光学元件捕获RGB彩色图像。仪器计算机能够执行仪器命令,自动数据处理,图像存储和遥测记录。完成的THESIS质量为2.04千克,总体积为3U,使用7W功率。 THESIS是在ASU的100K清洁实验室中设计,制造,集成和测试的。

著录项

  • 作者

    Veto, Michael.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Planetology.;Aerospace engineering.;Remote sensing.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 539 p.
  • 总页数 539
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:23

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号