科技报告详细信息
SLOPE STABILITY EVALUATION AND EQUIPMENT SETBACK DISTANCES FOR BURIAL GROUND EXCAVATIONS
MCSHANE DS
关键词: AR FACILITIES;    ALPHA-BEARING WASTES;    COMPUTER CODES;    CONFIGURATION;    EVALUATION;    EXCAVATION;    FRICTION;    SLOPE STABILITY;    SOILS;    STABILITY;    STORAGE;    WASTES;    WHEELS;   
DOI  :  10.2172/978603
RP-ID  :  HNF-36426 Rev 3
PID  :  OSTI ID: 978603
Others  :  Other: PRC-EDC-10-45817
Others  :  TRN: US1003134
学科分类:核能源与工程
美国|英语
来源: SciTech Connect
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【 摘 要 】

After 1970 Transuranic (TRU) and suspect TRU waste was buried in the ground with the intention that at some later date the waste would be retrieved and processed into a configuration for long term storage. To retrieve this waste the soil must be removed (excavated). Sloping the bank of the excavation is the method used to keep the excavation from collapsing and to provide protection for workers retrieving the waste. The purpose of this paper is to document the minimum distance (setback) that equipment must stay from the edge of the excavation to maintain a stable slope. This evaluation examines the equipment setback distance by dividing the equipment into two categories, (1) equipment used for excavation and (2) equipment used for retrieval. The section on excavation equipment will also discuss techniques used for excavation including the process of benching. Calculations 122633-C-004, 'Slope Stability Analysis' (Attachment A), and 300013-C-001, 'Crane Stability Analysis' (Attachment B), have been prepared to support this evaluation. As shown in the calculations the soil has the following properties: Unit weight 110 pounds per cubic foot; and Friction Angle (natural angle of repose) 38{sup o} or 1.28 horizontal to 1 vertical. Setback distances are measured from the top edge of the slope to the wheels/tracks of the vehicles and heavy equipment being utilized. The computer program utilized in the calculation uses the center of the wheel or track load for the analysis and this difference is accounted for in this evaluation.

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