erosion cycle
- erosion cycle的基本解释
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侵蚀循环
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The soil erosion process on the slope was clearly divided into sheet erosion stage, rill erosion developing stage and rill erosion stable stage. Before lOminutes of rainfalls, the percentage of sheet erosion amount to total erosion amount was more than 90%, and it indicated that sheet erosion happened on the slope. This percentage sharply decreased before SOminutes of rainfall time, on the other hand, the percentage of rill erosion amount to total erosion amount increased in curve form with rainfall time.
在降雨前10min左右,面蚀贡献率约占坡面侵蚀总量的90%以上,为面蚀阶段;随着降雨时间的延续,面蚀贡献率先急剧递减最后在第30min左右基本达到稳定,细沟侵蚀贡献率则出现相反趋势,此为细沟发育阶段;降雨后期,面蚀和细沟侵蚀贡献率的变化趋势逐渐变缓且基本达到稳定。
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The mostly conclusion is as below: 1 The characteristic analysis of the expressway soil erosion: Expressway soil erosion is different from conventional soil erosion and other soil erosion of exploitation construction project for its 4 outstanding features, including imbalance of soil erosion distribution in time and space; Presenting either threadiness or pinnate distribution in space; The quantity of soil erosion is large;Erosion form is complicated and frequency of causality soil erosion occuring is large.
具体得出的主要结论如下: 1高速公路土壤侵蚀的特征分析公路建设土壤侵蚀区别于传统的土壤侵蚀,与其它开发建设项目中的土壤侵蚀也有所区别,有自己突出的特点,主要表现为时间分布上不平衡;空间上呈线状或羽状分布;土壤侵蚀量大;侵蚀类型复杂,诱发性土壤侵蚀发生频数大4个方面。
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The results indicate that, in either single or double blowing, larger erosion rate is mainly found in the slag line and near purging plug area of ladle lining; erosion is accelerated when gas flow rate increases; the erosion rate of ladle lining with double blowing is larger than that of single blowing; erosion rate distribution is obviously different as gas flow rate increases; in heavy blowing, serious erosion centers around slag line area and expands gradually outwards; as purging plug gets close to lining wall, malconformation of erosion rate in ladle lining becomes more prominent and the erosion rate of lining near purging plug increases.
结果表明,无论单吹还是复吹,较大的蚀损速率主要分布在钢包渣线及近透气砖区域,吹气量的增大会加速钢包内衬的蚀损。采用复吹时,钢包内衬的蚀损较单吹时更快。随着吹气参数的改变,钢包内衬蚀损速率的分布状况差异明显。大吹气量下,较大的蚀损集中在渣线区域且呈环向扩展;透气砖安装距包壁越近,钢包内衬蚀损不均衡性也越突出,近透气砖内衬蚀损加重。
- 更多网络解释 与erosion cycle相关的网络解释 [注:此内容来源于网络,仅供参考]
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erosion cycle:侵蚀循环
eriochore 冠毛傳播 | erosion cycle 侵蝕循環 | erosion terrace 侵蝕階段
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erosion cycle:侵蚀旋回
erosion corrosion 冲蚀腐蚀 | erosion cycle 侵蚀旋回 | erosion device 冲蚀探测装置
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erosion cycle:侵蚀循环,侵蚀轮回
curing cycle 养护周期 | erosion cycle 侵蚀循环,侵蚀轮回 | freezing and thawing cycle 冻融循环
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erosion cycle:浸食轮廻
1719,"erosion control","浸食调整" | 1720,"erosion cycle","浸食轮廻" | 1721,"erosion feature","浸食特性"
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glacial erosion cycle:冰蚀轮回
glacial erosion 冰蚀 | glacial erosion cycle 冰蚀轮回 | glacial erosion lake 冰蚀湖
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