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改性沥青混合料在热带气候区域沥青路面中的应用
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作者 安建陶 《工程技术研究》 2023年第7期100-102,共3页
文章对沥青混合料进行改性试验,研究了热带气候区域造成沥青路面车辙病害及水损害等病害的主要因素。研究表明,掺入抗剥落剂及木质素纤维的沥青工程性能优良,将其掺入沥青,明显提高了沥青混合料的热稳定性和高温稳定性,即便在沥青经短... 文章对沥青混合料进行改性试验,研究了热带气候区域造成沥青路面车辙病害及水损害等病害的主要因素。研究表明,掺入抗剥落剂及木质素纤维的沥青工程性能优良,将其掺入沥青,明显提高了沥青混合料的热稳定性和高温稳定性,即便在沥青经短期老化条件下依然表现良好,显著提高了热带气候区域的路面施工质量及耐久性,可为今后热带气候区域的其他含沥青路面项目提供借鉴。 展开更多
关键词 改性沥青混合料 沥青路面 车辙 水损害 热带气候区域
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海南省热带气候区域鹅雏发育生态行为观察报告 被引量:1
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作者 李长胜 赵仲实 +2 位作者 孙风俊 徐桂琴 高冰 《家畜生态》 1996年第2期20-23,共4页
鹅是一种喜水食草的节粮型禽类,海南省光热水汽来源丰富,四季长青,水草丰盛,有发展喜水食草禽类的条件。为了提高热带气候区域鹤雏培育的成活率,满足广大市场对鹤业发展的需求,我们在热带气候区域的海南省进行了大群饲养实践,对... 鹅是一种喜水食草的节粮型禽类,海南省光热水汽来源丰富,四季长青,水草丰盛,有发展喜水食草禽类的条件。为了提高热带气候区域鹤雏培育的成活率,满足广大市场对鹤业发展的需求,我们在热带气候区域的海南省进行了大群饲养实践,对鹤雏发育生态行为进行了观察,摸索了一套提高鹤雏成活率的措施. 展开更多
关键词 饲养 行为 热带气候区域 雏鹅
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Can the tropical storms originated from the Bay of Bengal impact the precipitation and soil moisture over the Tibetan Plateau? 被引量:6
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作者 XIAO ZhiXiang DUAN AnMin 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第6期915-928,共14页
This study investigates the impacts of tropical storms originated from the Bay of Bengal(BOBTSs) on the precipitation and soil moisture over the Tibetan Plateau(TP) in April–June(AMJ) and September–December(SOND) du... This study investigates the impacts of tropical storms originated from the Bay of Bengal(BOBTSs) on the precipitation and soil moisture over the Tibetan Plateau(TP) in April–June(AMJ) and September–December(SOND) during 1981–2011 based on the best track dataset provided by Joint Typhoon Warning Centre(JTWC). Results indicate that there are about 1.35 BOBTSs influence the TP in each year and most of them occurred in May and October, and the BOBTSs in AMJ influence the TP with larger extension and higher latitudes than those in SOND. The maximum regional precipitation induced by the BOBTSs accounts for more than 50% for the total precipitation in the corresponding month and about 20% for the season. Further analysis reveals that the surface soil moisture anomalies induced by the BOBTSs can persist only 20–25 days in AMJ, and the case is also true for the snow depth in SOND. Numerical simulations by using the regional climate model of Weather Research and Forecasting(WRF) suggest that the soil moisture anomalies in the sub-surface can last 2 months whereas for the surface it can persist only about 20 days, which agrees well with the observation analysis. Overall, the effect of the preceding BOBTSs on the snow depth and soil moisture anomalies over the TP cannot maintain to summer, and there is no robust connection between the BOBTSs and summer precipitation anomalies in East China. Moreover, since the mid-1990 s, the spring rainfall induced by the BOBTSs over the TP seems to be enhanced to a certain degree because of the intensified BOBTSs. 展开更多
关键词 tropical storms Bay of Bengal the Tibetan Plateau soil moisture snow depth WRF
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