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2008-03-21_PERMIT FILE - C1980007A (5)
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2008-03-21_PERMIT FILE - C1980007A (5)
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Last modified
8/24/2016 3:25:41 PM
Creation date
6/20/2008 11:15:04 AM
Metadata
Fields
Template:
DRMS Permit Index
Permit No
C1980007A
IBM Index Class Name
Permit File
Doc Date
3/21/2008
Doc Name
pg 2.05-101 to 2.05-199
Section_Exhibit Name
2.05.5 & 2.05.6 Post-Mining Land Uses and Mitigation of Surface Coal Mining Operation Impacts
Media Type
D
Archive
Yes
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West Elk Mine <br />is It is important to note that no earth tremors (seismic activity) were felt by Mr. Dunrud in all the <br />annual traverses and observations made above the longwall mining areas in the Jumbo Mountain, <br />Apache Rocks, and Box Canyon mining areas during the last 9 years (1996 through 2004). For <br />example, no tremors were felt during the annual traverse above longwall panel 13 in 1999, when <br />the mining face was located directly beneath one of the subsidence observation points. This <br />point was located approximately 1,200 feet vertically above the active mining face, and 2,800 <br />feet north of Minnesota Reservoir. <br />In contrast to room-and-pillar mining, longwall mining is a uniform extraction procedure that <br />basically involves 1) the uniform cutting of a coal face, 2) the caving of the roof behind the <br />moving coal face, and 3) the recompression of the caved material behind the support system. <br />This system therefore causes only a minimum amount of very low magnitude seismic activity <br />(below the threshold of feeling at the ground surface), particularly where the overburden depth to <br />the coal being mined is less than about 1,500 feet. <br />Based on field observations during the past nine years (1996 through 2004), the major finding is <br />that landslide movement occurs in response to moisture and ground saturation, and is not <br />noticeably affected by subsidence or any mine-related seismic activity caused by longwall <br />mining beneath or near the landslides. <br />Records of seismic events in the immediate area of the West Elk Mine provided by the NEIC <br />indicate that since 1983, the largest event registered 3.60 on the Richter scale and occurred on <br />June 20, 2002. No evidence-was observed that this event resulted in new or renewed movement <br />of landslides in the mine area or damage to Monument Dam or Minnesota Reservoir. A coal <br />bounce measuring 3.3 on the Richter scale occurred in the mine area on October 10, 2004 and no <br />impacts to surface features or structures was noted. Historically, coal bounces in the area have <br />been recorded in the range of <2.0 to 3.3. None of these events appear to have impacted the area <br />landslides, and in particular, Monument Dam or Minnesota Reservoir. <br />Based on the above-mentioned historical evidence from the annual observations, the landslide <br />areas located north and south of Minnesota Reservoir are not expected to be impacted by mine- <br />induced subsidence and seismic activity when longwall panel E9 is mined. However, in order to <br />verify predictions, based on the historical evidence, monitoring is detailed in the section "Effects <br />Of Subsidence And Mine-Induced Seismic Activity On Man-Made Structures And Renewable <br />Resources". <br />Rocky ails <br />Rockfalls are the free falling movement of rocks, which have become detached from cliffs or other <br />steep slopes, and move under the influence of gravity and the underlying ground surface. The <br />detached rocks roll and/or bounce downhill, depending on the slope (configuration of the ground <br />surface;. Their movement continues until they are stopped by an obstruction or lose potential <br />`: _? stop naturally. <br />A low to medium potential exists for rockfalls in the South of Divide mining area. Analysis of <br />the terrain in the South of Divide mining area reveals slopes that range from 30 to 80 percent <br />along Minnesota Creek, the Dry Fork and its tributaries, and in local areas along the main fork of <br />2,05-147 Revised Jame 2005 PRIG, Rev. March 2006; Alai, 2006 PR70, Nov. 2006TRI07,Aprd 2007TR108; Sep. 2007 PR12; Feb. 2008 PR-12
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