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把火魔赶远些!———河南火电二公司消防安全二三事
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作者 王雪燕 《河南消防》 1997年第1期36-37,共2页
把火魔赶远些!———河南火电二公司消防安全二三事王雪燕在河南省重点工程、安阳电厂八期改扩建工程的建设工地上,活跃着这样一支队伍,他们头顶安全帽,身穿橄榄绿,到处检查火灾隐患,纠正消防违章行为,不管是在六十米高的锅炉钢... 把火魔赶远些!———河南火电二公司消防安全二三事王雪燕在河南省重点工程、安阳电厂八期改扩建工程的建设工地上,活跃着这样一支队伍,他们头顶安全帽,身穿橄榄绿,到处检查火灾隐患,纠正消防违章行为,不管是在六十米高的锅炉钢架上,还是宽阔的十三米汽机平台,无?.. 展开更多
关键词 消防安全 灭火器 复水器 消防员 脱漆剂 河南省 转子 施工现场 锅炉钢架 大方木
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The Maximum Ice Age Glaciation between the Karakorum Main Ridge (K_2) and the Tarim Basin and its Influence on Global Energy Balance 被引量:1
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作者 Matthias Kuhle 《Journal of Mountain Science》 SCIE CSCD 2005年第1期5-22,共18页
A modern research approach and working techniques in hitherto unexamined areas, produced the following results: 1). The tongues of deca- kilometre long Karakorum glaciers belong to temperate ice-streams with an an... A modern research approach and working techniques in hitherto unexamined areas, produced the following results: 1). The tongues of deca- kilometre long Karakorum glaciers belong to temperate ice-streams with an annual meltwater output. The short Aghil glaciers on the contrary are continental, arid and cold. 2). The present-day oscillations of the Karakorum glaciers are related to their own mass, and are contrary to and independent of the actual climate. Only the short glaciers, with steep tongue fronts, show a present-day positive balance. 3). C- dated Late Glacial moraines indicate14 a 400~800 m thick valley glacier at the former confluence point of the K2-, Sarpo Laggo- and Skamri glaciers. 4). From the evidence of transfluence passes with roches moutonnées, striae and the limits of glacial polishing, as well as moraines and erratics, a High Glacial at least 1200 m thick ice-stream network between the Karakorums and the Kuen Lun north slopes was reconstructed. The Shaksgam and Yarkand valleys were occupied by glaciers coming from west Tibet. The lowest-lying moraines are to be found in the foreland down to 2000 m, indicating a depression of the High Glacial (LGM) snowline (ELA) by 1300 m. 5). The approximately 10,000 measurements of the radiation balance at up to heights of 5500 m on K2 indicate that with incoming energy near the solar constant the reflection from snow- covered ice is up to 70% greater than from rock and rock waste surfaces. 6).These results confirm for the very dry western margins of Tibet an almost complete ice sheet cover in an area with subtropical energy balance, conforming with the Ice Age hypothesis of the author which is based upon the presence of a 2.4 million km2 Tibetan inland ice sheet. This inland ice developed for the first time when Tibet was uplifted over the snowline during the early Pleistocene. As the measured subtropical radiation balance shows, it was able to trigger the Quaternary Ice Ages. 展开更多
关键词 KARAKORUM Tibet ice age glaciation PALEOCLIMATE ice age theory high mountain geomorphology
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Collapse simulation of a super high-rise building subjected to extremely strong earthquakes 被引量:49
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作者 LU Xiao LU XinZheng +1 位作者 ZHANG WanKai YE LiePing 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第10期2549-2560,共12页
In recent years, super high-rise buildings (>500 m) are developing very quickly and become an important frontier of civil engineering. The collapse resistance of super high-rise buildings subjected to extremely str... In recent years, super high-rise buildings (>500 m) are developing very quickly and become an important frontier of civil engineering. The collapse resistance of super high-rise buildings subjected to extremely strong earthquake is a critical problem that must be intensively studied. This paper builds up a nonlinear finite element model of the tallest building in China, Shang- hai Tower (632 m), and proposes the modeling method and failure criteria for different structural elements. The dynamic char- acters of this building are then analyzed, and the possible failure modes and collapse processes due to earthquakes are pre- dicted, as well as the corresponding collapse mechanism. This work will be helpful in collapse prevention and the seismic design of super high-rise buildings. 展开更多
关键词 super high-rise building collapse simulation extremely strong earthquake finite element method
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