Ecological restoration refers to the containment of soil erosion,restoration of water conservation,climate regulation,maintenance of ecological functions of biodiversity,and improvement of ecological environment and l...Ecological restoration refers to the containment of soil erosion,restoration of water conservation,climate regulation,maintenance of ecological functions of biodiversity,and improvement of ecological environment and landscape pattern based on self-repairing capacity of the nature and combined with appropriate artificial measures. Since the natural restoration process of karst desertification mountain is very long,it needs to be supplemented by artificial vegetation restoration. This paper introduced the ecological restoration technologies implemented in karst rocky desertification mountains in Xixiu District,Anshun City of Guizhou Province,and also introduced the afforestation tending management measures. It assessed the ecological benefits of the ecological restoration project from five aspects: mountain community characteristics,vegetation coverage,species diversity,afforestation survival rate and landscape effect.展开更多
The authors employ the high-density resistivity method to image the subsurface structure of a mountain in Erdaojiang District,Tonghua City,Jilin Province,China,to evaluate the potential risk of slope failure on surrou...The authors employ the high-density resistivity method to image the subsurface structure of a mountain in Erdaojiang District,Tonghua City,Jilin Province,China,to evaluate the potential risk of slope failure on surrounding residential areas and infrastructure,and identify a shallow fault that extends across the center of the mountain and is perpendicular to the mountain slope and accurately locate the spatial position and depth of another fault on the southern side of the mountain.The results provide an important basis for evaluating mountain slope stability.This study also demonstrates that the high-density resistivity method is effective for detecting mountain faults.展开更多
山东省德州市砂岩热储开发时间早,供暖工程数量较多,但受社区面积和布局的影响,采灌井距远近不一,过近的采灌井距,势必会加速热突破的发生。为指导今后区内地热工程建设,利用《砂岩热储地热尾水回灌技术规程》(DZ/T0330—2019)中合理井...山东省德州市砂岩热储开发时间早,供暖工程数量较多,但受社区面积和布局的影响,采灌井距远近不一,过近的采灌井距,势必会加速热突破的发生。为指导今后区内地热工程建设,利用《砂岩热储地热尾水回灌技术规程》(DZ/T0330—2019)中合理井距公式,代入德城区地热地质参数,推导出该区合理井距经验公式。随着地热工程开采量增加,合理井距亦随之增加,当开采量为60 m 3/h时,合理井距不应低于181 m。根据计算,德城区51组采灌对井中,21组采灌对井将会发生热突破,且有8组采灌对井热突破时间不足10年,占比达到了19.6%。为保障采灌工程可持续运行,采灌井应及时调整布局。展开更多
文摘Administrative divisions: ChengduMunicipality:Qingyang District, Jinjiang District,Wuhou District, Chenghua District, JinniuDistrict, Longquanyi District, QingbaijiangDistrict, Jintang County, Shuangliu County,Wenjiang County, Chongzhou City, XinduCounty, Dujiangyan City, Qionglai City,Pixian County, Pujiang County, XinjingCounty, Dayi County, Pengzhou
基金Supported by the Construction Science and Technology Plan Program of Chongqing "Study on Landscape and Ecological Restoration Technology for Karst Rocky Desertification Landforms"(2015-1-19)
文摘Ecological restoration refers to the containment of soil erosion,restoration of water conservation,climate regulation,maintenance of ecological functions of biodiversity,and improvement of ecological environment and landscape pattern based on self-repairing capacity of the nature and combined with appropriate artificial measures. Since the natural restoration process of karst desertification mountain is very long,it needs to be supplemented by artificial vegetation restoration. This paper introduced the ecological restoration technologies implemented in karst rocky desertification mountains in Xixiu District,Anshun City of Guizhou Province,and also introduced the afforestation tending management measures. It assessed the ecological benefits of the ecological restoration project from five aspects: mountain community characteristics,vegetation coverage,species diversity,afforestation survival rate and landscape effect.
基金Supported by National Key R&D Program of China and Fundamental Research Funds for the Central Universities(2017YFC0601305)。
文摘The authors employ the high-density resistivity method to image the subsurface structure of a mountain in Erdaojiang District,Tonghua City,Jilin Province,China,to evaluate the potential risk of slope failure on surrounding residential areas and infrastructure,and identify a shallow fault that extends across the center of the mountain and is perpendicular to the mountain slope and accurately locate the spatial position and depth of another fault on the southern side of the mountain.The results provide an important basis for evaluating mountain slope stability.This study also demonstrates that the high-density resistivity method is effective for detecting mountain faults.
文摘山东省德州市砂岩热储开发时间早,供暖工程数量较多,但受社区面积和布局的影响,采灌井距远近不一,过近的采灌井距,势必会加速热突破的发生。为指导今后区内地热工程建设,利用《砂岩热储地热尾水回灌技术规程》(DZ/T0330—2019)中合理井距公式,代入德城区地热地质参数,推导出该区合理井距经验公式。随着地热工程开采量增加,合理井距亦随之增加,当开采量为60 m 3/h时,合理井距不应低于181 m。根据计算,德城区51组采灌对井中,21组采灌对井将会发生热突破,且有8组采灌对井热突破时间不足10年,占比达到了19.6%。为保障采灌工程可持续运行,采灌井应及时调整布局。