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全站仪三角高程测量精度分析——本科生科研训练研究报告
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作者 张宝 陈晓 +2 位作者 张世建 毛文浩 王珏 《活力》 2011年第20期67-69,共3页
全站仪的平面定位精度一般能够满足各方面应用的需要,但其高程测量的利用一直是个广泛探讨的课题。三角高程测量精度主要受大气折光的影响。本研究通过模拟实际工程为背景,通过以测量时的温度以及湿度为变量,推算出大气折光系数,从... 全站仪的平面定位精度一般能够满足各方面应用的需要,但其高程测量的利用一直是个广泛探讨的课题。三角高程测量精度主要受大气折光的影响。本研究通过模拟实际工程为背景,通过以测量时的温度以及湿度为变量,推算出大气折光系数,从而结合相应的高差改正值,提出一条拟合曲线。在相似的环境,工程实测数据可以通过拟合曲线求解出的数据进行直接改正。 展开更多
关键词 三角高程测量 高差改正值 折光系数 拟合曲线
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Renewable Methanol Production Using Captured Carbon Dioxide and Hydrogen Generated through Water-Splitting
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作者 Dima Al Hashar 《Engineering(科研)》 CAS 2022年第8期339-359,共21页
The global warming issues associated with fossil fuels have forced the world to shift towards environment-friendly alternatives. The studies on the capture and storage of CO<sub>2</sub> have gained signifi... The global warming issues associated with fossil fuels have forced the world to shift towards environment-friendly alternatives. The studies on the capture and storage of CO<sub>2</sub> have gained significant research attention, and to attract the world towards CO<sub>2</sub> capturing and storing, it is necessary to find suitable applications for this captured CO<sub>2</sub>. Methanol is one of the products which can be produced by utilizing the captured CO<sub>2</sub> and hydrogen that can be produced by water splitting. Keeping in view both these green fuel production processes, this study proposes a combined application of both these technologies for the production of methanol, which is an important chemical used in manufacturing industries. This review paper presents a brief study of both carbon capture and hydrogen production technologies. It also provides research trends, economic aspects, and methods of incorporating both these technologies to produce methanol. Additionally, the prospects of the approach in Oman have also been presented. 展开更多
关键词 Renewable Energy Captured Carbon Dioxide Hydrogen Production ELECTROLYSIS Green Methanol
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Electrically pumped quantum-dot lasersgrownon 300 mm patterned Si photonic wafers 被引量:6
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作者 Chen Shang Kaiyin Feng +9 位作者 Eamonn THughes Andrew Clark Mukul Debnath Rosalyn Koscica Gerald Leake Joshua Herman David Harame Peter Ludewig Yating Wan John E.Bowers 《Light(Science & Applications)》 SCIE EI CAS CSCD 2022年第11期2698-2705,共8页
Monolithic integration of quantum dot(QD)gain materials onto Si photonic platforms via direct epitaxial growth is a promising solution for on-chip light sources.Recent developments have demonstrated superior device re... Monolithic integration of quantum dot(QD)gain materials onto Si photonic platforms via direct epitaxial growth is a promising solution for on-chip light sources.Recent developments have demonstrated superior device reliability in blanket hetero-epitaxy ofⅡ-Ⅴdevices on Si at elevated temperatures.Yet,thick,defect management epi designs prevent vertical light coupling from the gain region to the Si-on-lnsulator waveguides.Here,we demonstrate the frst electrically pumped QD lasers grown by molecular beam epitaxy on a 300 mm patterned(001)Si wafer with a buttcoupled configuration.Unique growth and fabrication challenges imposed by the template architecture have been resolved,contributing to continuous wave lasing to 60℃and a maximum double-side output power of 126.6 mW at 20℃with a double-side wall-plug efficiency of 8.6%.The potential for robust on-chip laser operation and effcient lowloss light coupling to Si photonic circuits makes this heteroepitaxial integration platform on Si promising for scalable and low-cost mass production. 展开更多
关键词 PUMPED QUANTUM COUPLING
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