Vui lòng dùng định danh này để trích dẫn hoặc liên kết đến tài liệu này: http://thuvienso.vanlanguni.edu.vn/handle/Vanlang_TV/18647
Toàn bộ biểu ghi siêu dữ liệu
Trường DCGiá trị Ngôn ngữ
dc.contributor.authorYasidu, Umali M-
dc.contributor.authorFujii, Yoshiaki-
dc.contributor.authorKodama, Jun-ichi-
dc.contributor.authorFukuda, Daisuke-
dc.contributor.authorManeya, George J, ... [et al.]-
dc.date.accessioned2020-06-01T04:18:29Z-
dc.date.available2020-06-01T04:18:29Z-
dc.date.issued2019-
dc.identifier.issn1687-8086-
dc.identifier.issn1687-8094 (eISSN)-
dc.identifier.otherBBKH1316-
dc.identifier.urihttp://thuvienso.vanlanguni.edu.vn/handle/Vanlang_TV/18647-
dc.description"Hindawi; Advances in Civil Engineering; Volume 2019, Article ID 5350686, 17 pages; https://doi.org/10.1155/2019/5350686"vi
dc.description.abstractTo develop affordable countermeasures against the roof falls, the accident records of Mchenga Mine were investigated as the first step. Based on the accident records, it was found that roof falls occurred most in April and May. Humidity measurements were taken both in the underground mine and at surface, and humidity peak appeared in April. The accident occurrence and the underground humidity had a positive correlation in which no roof falls could be expected under a humidity of less than a certain value. Effect of humidity on the indirect tensile strength of the rock samples collected from the mine was investigated, and it showed that the indirect tensile strength decreased with humidity. The diffusion coefficient was measured for the rock samples collected from Mchenga Mine as well as from Kaziwiziwi Mine, and the migration of water vapor into rock mass in the roof was calculated for Mchenga case. It was clarified that the weakening of tensile strength was transmitted upward at several centimeters per day from the immediate roof. This could explain the slight difference of the accident peak in April and May from the humidity peak in April. Introducing fresh and dry outside air, if possible, will not only improve the working environment but also contribute to a decrease in roof falls.vi
dc.language.isoenvi
dc.publisherHindawi Limitedvi
dc.subjectMinesvi
dc.subjectWorking conditionsvi
dc.subjectFailurevi
dc.subjectHumidityvi
dc.subjectMining industryvi
dc.subjectRock massesvi
dc.subjectInvestigationsvi
dc.subjectRoadsvi
dc.subjectInjuriesvi
dc.subjectCoal miningvi
dc.subjectMigrationvi
dc.subjectInfluencevi
dc.subjectVentilationvi
dc.subjectWater vaporvi
dc.subjectMining accidentsvi
dc.subjectDiffusion coefficientvi
dc.subjectGeologyvi
dc.subjectFatalitiesvi
dc.subjectUnderground minesvi
dc.subjectEngineeringvi
dc.subjectAccidentsvi
dc.subjectStonevi
dc.subjectTensile strengthvi
dc.titleInfluences of Water Vapor on Roof Fall Accidents in Selected Underground Coal Mines in Malawivi
dc.typeOthervi
Bộ sưu tập: Bài báo_lưu trữ

Các tập tin trong tài liệu này:
Tập tin Mô tả Kích thước Định dạng  
BBKH1316_TCCN_Influences of Water Vapor.pdf
  Giới hạn truy cập
Influences of Water Vapor on Roof Fall Accidents in Selected Underground Coal Mines in Malawi10.45 MBAdobe PDFXem/Tải về  Yêu cầu tài liệu


Khi sử dụng các tài liệu trong Thư viện số phải tuân thủ Luật bản quyền.