期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
升空过程中低温液氧贮箱压力变化及热分层研究 被引量:4
1
作者 刘展 孙培杰 +2 位作者 李鹏 厉彦忠 晋永华 《西安交通大学学报》 EI CAS CSCD 北大核心 2016年第11期97-103,共7页
针对火箭升空过程,通过编写用户自定义程序详细考虑了气动热以及空间辐射热的影响,数值研究了低温液氧箱体压力变化及流体热分层现象。在计算过程中,着重考虑了大气物性参数随高度的变化、飞行过程中加速度变化与气液界面相变对箱体压... 针对火箭升空过程,通过编写用户自定义程序详细考虑了气动热以及空间辐射热的影响,数值研究了低温液氧箱体压力变化及流体热分层现象。在计算过程中,着重考虑了大气物性参数随高度的变化、飞行过程中加速度变化与气液界面相变对箱体压力以及箱内流体温度分布的影响。模拟结果表明:气动热对箱体控压频率产生了较大的影响。随着气动热流的增加,箱体增压时间变短,降压时间变长。在飞行120s时,气动热流达到最大,其对箱体压增性能的影响也最为突出,此时箱体增压时间最短为4s,箱体降压时间最长,约13s。在无排液阶段,箱体压力呈现波动变化,气液界面处气枕被冷凝。在该过程中,液相质量增加了11.05kg,气相质量减少了1.52kg。在增压排液阶段,尽管增压气体持续注入箱内,箱体压力仍逐渐减小,而气相质量则呈波动增加。随着时间的延长,气液相温度均向温度升高的方向推进。由于空间辐射漏热造成了排液温度的升高,给发动机运行带来安全隐患,应采取有效绝热措施来减少空间漏热。 展开更多
关键词 升空过程 气动热 空间辐射 压力变化 热分层
下载PDF
Effects of Elevated Air Temperatures on Soil Thermal and Hydrologic Processes in the Active Layer in an Alpine Meadow Ecosystem of the Qinghai-Tibet Plateau 被引量:4
2
作者 BAI Wei WANG Genxu LIU Guangsheng 《Journal of Mountain Science》 SCIE CSCD 2012年第2期243-255,共13页
In this study,effects of elevated air temperatures on thermal and hydrologic process of the shallow soil in the active layer were investigated. Open-top chambers(OTCs)were utilized to increase air temperatures 1-2℃ i... In this study,effects of elevated air temperatures on thermal and hydrologic process of the shallow soil in the active layer were investigated. Open-top chambers(OTCs)were utilized to increase air temperatures 1-2℃ in OTC-1 and 3-5℃ in OTC-2 in the alpine meadow ecosystem on the Qinghai- Tibetan Plateau.Results show that the annual air temperatures under OTC-1 and OTC-2 were 1.21℃ and 3.62℃ higher than the Control,respectively.The entirely-frozen period of shallow soil in the active layer was shortened and the fully thawed period was prolonged with temperature increase.The maximum penetration depth and duration of the negative isotherm during the entirely-frozen period decreased, and soil freezing was retarded in the local scope of the soil profile when temperature increased.Meanwhile, the positive isotherm during the fully-thawed period increased,and the soil thawing was accelerated.Soil moisture under different manipulations decreased with the temperature increase at the same depth. During the early freezing period and the early fully- thawed period,the maximum soil moisture under the Control manipulation was at 0.2 m deep,whereas under OTC-1 and OTC-2 manipulations,the maximum soil moisture were at 0.4-0.5 m deep. These results indicate that elevated temperatures led to a decrease of the moisture in the surface soil.The coupled relationship between soil temperature and moisture was significantly affected by the temperature increase.During the freezing and thawing processes, the soil temperature and moisture under different manipulations fit the regression model given by the equationθV=a/{1+exp[b(TS+c)]}+d. 展开更多
关键词 Thermal and hydrologic process TEMPERATURE Open-top chambers Alpine meadow Qinghai-Tibetan Plateau
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部