排序方式: 共有68条查询结果,搜索用时 15 毫秒
51.
52.
为了保证红山地震台数字化观测系统的正常运行和向国家台网中心的实时波形传输,数字信号分配器在数字化地震观测系统中的应用实现了数采输出的信号分道,分别输出到卫星、台站的实时监控前台机和备份前台机及数采监控仪。避免了实时监控机因硬件和软件故障所造成的台站资料断记和卫星传输中断,在全国数字化台站中具有普遍的应用价值。 相似文献
53.
54.
雅鲁藏布江米林宽谷段爬升沙丘粒度分异特征研究 总被引:3,自引:0,他引:3
雅鲁藏布江米林宽谷段爬升沙丘分布广泛。选择卧龙镇西侧雅鲁藏布江右岸典型爬升沙丘,根据沙丘爬升高度和叠置沙丘地貌部位对其表面沉积物进行了系统采样。作为河谷风沙地貌的重要组成部分,相应采集了河漫滩、阶地沙丘沙样品。粒度分析表明,爬升沙丘对河漫滩沙丘、阶地沙丘在物源和形成过程方面具有继承性,其表面沉积物以细沙和极细沙为主(2.07~3.71Φ),分选中等或较好(0.20~1.41Φ),细偏,多峰。由坡脚向丘顶的沉积物粒径变细,分选变好,偏度和峰度降低。爬升沙丘表面叠置沙丘的粒度向丘顶变粗、分选变好。细沙、极细沙等粒级组分与高度相关,反映颗粒爬升能力不同。叠置条带状沙丘脊部和槽部的粒度存在分异。 相似文献
55.
利用YJ-3000t和JL-3600t多顶砧压力机,以哀牢山造山带南部红河县大白能—乐育剖面上的天然块状斜长角闪岩为初始样品,在950℃、1.0~3.5GPa、恒温20~300h条件下进行了两个系列的斜长角闪岩块状样品脱水部分熔融实验:(1)保持温度T=950℃,加热时间t=100h不变,改变压力(1.0~3.5GPa)的实验;(2)保持温度T=950℃,压力p=3.0GPa不变,改变加热时间(20~300h)的实验。结果表明,1.0~3.5GPa、950℃、恒温100h的条件下,随压力升高,斜长角闪岩中依次生成了单斜辉石+石榴石+熔体的矿物组合(1.0~1.5GPa)和单斜辉石+石榴石+熔体+硬玉+SiO2矿物+蓝晶石(2.0~3.5GPa)的矿物组合。3.0GPa、950℃条件下,随加热时间增加,实验产物中依次生成了单斜辉石+石榴石+熔体+硬玉+SiO2矿物+蓝晶石的矿物组合(20~100h)和单斜辉石+石榴石+熔体的矿物组合(150~300h)。斜长角闪岩的原岩结构决定了实验产物中新生矿物和熔体的分布。依据实验产物的矿物组合和新生矿物的分布特征,讨论了950℃、1.0~3.5GPa、恒温(20~300h)条件下,斜长角闪岩部分熔融过程的结构变化、变质反应以及石榴石冠状体的成因。 相似文献
56.
57.
58.
59.
60.
To measure elastic wave velocities in rocks at high temperature and high pressure is an important way to acquire the mechanics and thermodynamics data of rocks in the earth's interior and also a substantial approach to studying the structure and composition of materials there. In recent years, a rapid progress has been made in methodology pertaining to the measurements of elastic wave velocities in rocks at high temperature and high pressure with solids as the pressure-transfer media. However, no strict comparisons have been made of the elastic wave velocity data of rocks measured at high temperature and high pressure by various laboratories. In order to compare the experimental results from various laboratories, we have conducted a comparative experimental study on three measuring methods and made a strict comparison with the results obtained by using the transmission method with fluid as the pressure-transfer medium. Our experimental results have shown that the measurements obtained by the three methods are comparable in the pressure ranges of their application. The cubic sample pulse transmission method used by Kern is applicable to measuring elastic wave velocities in crustal rocks at lower temperature and lower pressure. The prism sample pulse reflection-transmission method has some advantages in pressure range, heating temperature and measuring precision. Although the measurements obtained under relatively low pressure conditions by the prism sample pulse transmission method are relatively low in precision, the samples are large in length and their assemblage is simple. So this method is suitable to the experiments that require large quantities of samples and higher pressures. Therefore, in practical application the latter two methods are usually recommended because their measurements can be mutually corrected and supplemented. 相似文献