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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >A new method for determining meteoroid mass from head echo data
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A new method for determining meteoroid mass from head echo data

机译:一种新的方法来确定流星体质量头回波数据

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摘要

A head echo is the radar reflection from the plasma immediately surrounding a meteoroid upon its entry into the Earth's atmosphere; analysis of these plasmas can help determine a parent meteoroid's inherent properties, such as mass. In the past, meteoroid mass was calculated using head echo velocity and deceleration data by assuming momentum conservation between the meteoroid and air molecule. We refer to such masses as “dynamical masses.” This method, however, can only be used to determine meteoroid mass if either the meteoroid radius or density is assumed. In this paper, we expound upon a new method for determining a meteoroid's mass by utilizing our new spherical scattering theory. This theory allows us to use head echo measurements to calculate head echo plasma density. Then, by using the plasma density in an established formula that estimates the ratio of unionized to ionized material produced by an ablating meteoroid, we can determine a meteoroid's mass. We refer to such masses as “scattering masses.” We show that our new mass determination method applies to head echoes detected simultaneously at VHF and UHF and verify that the meteoroid mass is the same at both frequencies. We conclude with a comparison between dynamical and scattering masses and show that in general, these methods agree to within an order of magnitude.
机译:一个头的雷达反射回波等离子体流星体周围立即它进入地球的大气层;这些等离子体可以帮助确定一个家长流星的内在属性,如质量。过去,流星体质量计算使用头回波速度和减速数据假设之间的动量守恒流星体和空气分子。群众为“动态质量。”然而,只能用于确定流星体如果流星体半径或密度是质量假定。方法确定的流星体的质量利用我们的新球形散射理论。这一理论允许我们使用回声测量头回波计算等离子体密度。建立公式估计的比率工会电离物质的生产烧蚀的流星,我们可以确定流星体的质量。“群众散射。”测定方法适用于头回声同时发现在甚高频、超高频和验证流星体的质量都是一样的频率。动力和散射群众之间一般来说,这些方法同意在一个数量级。

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