共查询到20条相似文献,搜索用时 15 毫秒
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1. Introduction
Solar radio astronomy is an important branch of solar physics, which deals with the radio emission from the solar atmosphere. In solar physics, one of the greatest challenges is to understand the energy storing in the hot atmospheric plasma above sunspots and its sudden releasing in eruptive processes, such as solar flares, eruptive filaments, and coronal mass ejections (CME). Intrinsically, 相似文献
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ZHANG Hongqi 《中国科学院院刊(英文版)》2011,25(3):220-222
Helicities is topologically a measure of the structural complexity of the corresponding fields.The magnetic helicity can be separated into two kinds.One is the self helicity,which relates to the magnetic flux tubes twisted themselves.This helicity may be used to analyze the twisted 相似文献
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《中国科学院院刊(英文版)》2011,25(3):226-227
The Huairou Solar Observing Station(HSOS) is an important national observing station under the National Astronomical Observatories of the CAS(NAOC). Its main task is to observe and study solar magnetic and velocity fields.The station was established on the 相似文献
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《中国科学院院刊(英文版)》2011,25(3):237-237
With its pure aperture up to 985mm,the New Vacuum Solar Telescope of China(NVST) has become the world’s biggest vacuum solar telescope.The main science task of NVST is the high-resolution observation of photosphere and chromosphere including their fine structure of magnetic field on the sun.The NVST was equipped with many new 相似文献
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太阳能是一种取之不尽,用之不竭的环保无污染可再生能源,文章分别介绍太两种阳能采暖系统:太阳能采暖系统分为太阳能地板辐射采暖系统和太阳能热泵地板辐射采暖系统;分别介绍了两种太阳能采暖系统的原理和研究现状,并对太阳能采暖系统的前景进行了展望。 相似文献
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1960年至2009年河西走廊东部太阳辐射变化规律及太阳能资源利用分析 总被引:2,自引:0,他引:2
利用线性回归分析和Mann-Kendall检验法,统计分析了河西走廊东部1960年-2009年近50a来的太阳总辐射和日照时数的变化规律。结果表明:河西走廊东部年平均太阳总辐射为5988.7MJ/m2,为太阳能资源丰富区,太阳总辐射存在明显的季节变化,月和日太阳总辐射变化趋势均呈单峰型。河西走廊东部年平均太阳总辐射在波动中上升,其线性倾向率为+12.7MJ(/m2·a);春、夏、秋、冬季的太阳总辐射呈不同程度的上升趋势,线性倾向率为+4.72MJ(/m2·a)、+5.69MJ(/m2·a)、+2.0MJ(/m2·a)、+0.17MJ(/m2·a)。年太阳总辐射、年日照时数的突变增大年与区域内气候开始变暖年同步,气候变暖使区域内中北部川区降水呈增多趋势,说明全球增暖的气候背景下,降水增多对空中的大气污染物有抑制作用,有利于河西走廊东部太阳能总辐射值、日照时数的增大。河西走廊东部年日照时数在空间分布呈现由北向南逐渐减少,季节分布呈现由夏-春-秋-冬季减少。研究区域太阳能资源总量丰富,有利于太阳能资源的开发利用。 相似文献