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[书籍类]Rock mechanics for underground mining, 3rd ed [复制链接]

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离线hetang
 

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只看楼主 倒序阅读 使用道具 楼主  发表于: 2009-08-13
— 本帖被 love36524 从 岩石力学与工程 移动到本区(2011-02-11) —
Rock mechanics for underground mining, 3rd ed ?U.+SQ  
NpqMdd   
by 9HrT>{@  
n@  lf+  
B. H. G. Brady L,c@Z@  
Emeritus Professor, The University of Western Australia, and Consulting =B@+[b0Z  
Engineer, Montville, Queensland, Australia 6r{NW9y'  
"s[wLclfG  
E. T. Brown :UM>`Y  
Emeritus Professor, The University of Queensland, and Senior Consultant, F8mS5oB|^  
Golder Associates Pty Ltd, Brisbane, Australia   4Ra  
Lg Xc}3  
KLUWER ACADEMIC PUBLISHERS ;+] mcgN!  
~``oKiPg@  
2005 Springer Science + Business Media, Inc m/uBM6SXx  
\=PnC}7I  
Preface to the third edition Wsya:9|  
Sometimes it is suggested that mining engineering and its supporting engineering ,Bax0p  
sciences have reached a state of maturity. However, this proposition is inconsistent ?aOx b  
with major developments in the twenty years that have elapsed since the preparation of >Lj0B%^EvM  
the first edition of this book, and the ten years since it has been subject to any substantial Uo?g@D  
revision. Over those periods, innovations and improvements in engineering practice l Os91+.%  
in mining and mining rock mechanics, and advances in the engineering science of / r6^]grg  
rock mechanics, have been extraordinary. For these reasons the third edition, which H <41H;m  
results from comprehensive and thorough revision of the earlier editions, has involved 9`  
the replacement or substantial modification of the equivalent of about half of the text N Q~keN  
and figures of those versions of the book. ,Z*&QR  
One of the key drivers for many significant developments in fundamental rock mechanics <]<P<  
over the period has been the mining industry’s recognition of the economic ? cU9~=  
returns of better understanding and more rigorous application of the governing sciences V .+ mK|)  
embedded in its industrial operations and processes. The result has been some 5<ZE.'O  
notable advances in mining engineering practice, involving improvements in mining K}7E;O5m"  
methods in particular. For example, caving methods are now more widely applied *P2_l Q=  
as understanding of their scientific basis has improved and their economic and operational ;:2]++G  
advantages have been realised. Whereas sublevel caving was once regarded r(WR=D{  
in some places as a method of marginal interest, the advent of very large scale sublevel XE8>& & X  
caving, made possible in part by improved drilling technology and in part by E{x<P0 ;  
understanding of the governing rock mechanics, it is now an attractive proposition for mh&wvT<:{  
many orebodies. Similarly, block caving is now conducted efficiently and reliably in C$?gt-tJ'  
orebody settings that would have been inconceivable two decades ago. At the same Z$ q{!aY  
time, methods such as overhand cut-and-fill stoping and shrink stoping have declined v,bCj6  
in application, replaced in part by open stoping and bench-and-fill stoping, where large =y+gS%o$  
scale mechanisation, improved backfill technology, reliable rock mass reinforcement z6 T3vw  
of stope walls and the intrinsic advantages of non-entry methods of working have led & -L$B  
to superior economics and enhanced operational safety. >dO1)  
The scope of developments in mining rock mechanics science and practice has been Ug(;\*yg  
as impressive as that in mining engineering. Perhaps the most significant advance has 8h"Val|qP  
been the resolution of some longstanding issues of rock fracture, failure and strength B!{vSBq  
and their relation to the modes of deformation and degradation of rock around mining ramYSX@  
excavations. The fact that the key research on this topic was conducted at the Underground r ,I';vm<`  
Research Laboratory of Atomic Energy of Canada Limited demonstrates the yu3: Hv}  
extent to which mining rock mechanics has benefited from fundamental research in 7[=*#7}.  
other fields of rock engineering. The mechanics of blocky rock has also been a field of &[71~.Od  
impressive development, particularly in regard to formulation of a broad spectrum of ?5'EP|<  
methods of analysis of block jointed rock and their application in excavation engineering Kz>bfq7  
and support and reinforcement design. More generally, improved understanding -yyim;Nj  
of the mechanics of discontinuous rock has had a profound effect on simulation of }#%3y&7M7  
caving mechanics and therefore on the design and operation of block caving and ZNWo:N8;  
sublevel caving mines. F[am2[/<A  
} )D E  
Mining-induced seismicity and the related phenomenon of rockbursts have become UF37|+"E  
more prevalent in hard rock mining. Developments in mineworthy seismic equipment C:z+8wt  
and associated data recording, processing and analysis hardware and software have ybk~m  
contributed greatly to measurement, characterisation and management of the problem. pY@$N&+W  
These developments have been complemented by measures in excavation design Y$JGpeq8w  
and extraction sequencing which have done much to mitigate the serious operating Q8-;w{%  
problems which can occur in seismically active, rockburst prone mines. In large-scale ws}cMX]*  
open stope mining, Canadian developments based on pillarless stoping, formulation ; '6`hZ  
of extraction sequences which promote the evolution and uniform displacement of a ][vm4UY  
regular mine stress abutment, and the extensive use of cement-stabilised backfill, have VPOzt7:  
been successful in managing an acute mining challenge. Notably, these measures have s4V-brCM$|  
been based on sound conceptual and analytical models of the relation of damaging K9-;-{qb  
seismicity to induced stress, geological structure, potential rock displacements and 24{Tl q3  
strain energy release during mining. TOF_m$@#  
Some remarkable developments in computational methods have supported these ].ZfTrM]  
improvements in rock mechanics practice. Many mining rock mechanics problems 3XykIj1  
are effectively four-dimensional, in that it is the evolution of the state of stress over the <46> v<  
time scale of the mining life of the orebody which needs to be interpreted in terms of RHO | g0  
the probable modes of response of the host rock mass. The computational efficiency :\hcl&W:  
of tools for three-dimensional stress analysis now permits modelling of key stages of E3..$x-/  
an extraction sequence, for example, as a matter of routine rock mechanics practice. S7oPdzcU-  
Similarly, computer power and efficient algorithms provide a notable capacity to zD}@QoB  
simulate the displacement and flow of rock in cave mining and to support design of G-7!|&  
optimum caving layouts. Y=G9|7*lO  
Notwithstanding these developments, it is encouraging to note continued attention \vg(@)$q   
to formal mathematical analysis in solution of rock mechanics problems. The results ]'IZbx:  
of such analysis provide the canonical solutions for the discipline of rock mechanics 1f}YKT  
and ensure a sound base for both the science and engineering practice.  Y7*8 A,  
In preparing this extensive revision, the authors have been fortunate to have the ky4 ;7RK  
support of many colleagues and several organisations. In particular, they would like HKB?G~  
to record the helpful advice and comment of colleagues on possible improvements *Wbs{>&No  
in earlier editions of the book and in identifying inevitable errors in the text. They j8Pqc]  
acknowledge the generous assistance of the Brisbane office of Golder Associates in H){}28dX  
providing facilities and many helpful services, particularly in assistance with drafting r_R( kns  
of the figures for this edition. One of the authors was supported for part of the J!{"^^*  
work of revision by The University of Western Australia, and the other by the Julius t)qu@m?FZ)  
Kruttschnitt Mineral Research Centre of The University of Queensland. This support, 8Dy5g  
including the associated library services, is acknowledged with gratitude. The authors ht>C6y  
thank the many individuals and organisations who generously gave permission to use ws/e~ T<c  
published material. Finally, they record the encouragement of publisher’s representative, stxei 6  
Petra van Steenbergen, and her patient assistance and advice during this major 5;v_?M!UCK  
undertaking. ~,Y xUn8@  
B. H. G. B. Fw{:fFZC[  
E. T. B. qStZW^lFeY  
)NF5,eD  
荷塘月色
离线hetang

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只看该作者 1楼 发表于: 2009-08-13
回 楼主(hetang) 的帖子
part2         
荷塘月色
离线hetang

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只看该作者 2楼 发表于: 2009-08-13
part3        
荷塘月色
离线hetang

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只看该作者 3楼 发表于: 2009-08-13
part4        
荷塘月色
离线wolfknight

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只看该作者 4楼 发表于: 2009-08-13
书很好,以后一定要好好学英文
离线baiyuting

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只看该作者 5楼 发表于: 2009-08-14
很需要这方面的书但是英文的不知道能不能看懂努力!
还需努力!不断进步!
离线meilaoda

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只看该作者 6楼 发表于: 2009-08-17
好找!多谢楼主!
离线michaelshu

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只看该作者 7楼 发表于: 2009-08-18
谢谢分享啊     
离线redtony
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只看该作者 8楼 发表于: 2009-08-18
很好的书,谢谢分享
离线zhangzq87

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只看该作者 9楼 发表于: 2009-08-19
good book surely, I have read it regular version.
离线yqmangel

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只看该作者 10楼 发表于: 2009-08-23
I NEED THIS BOOK,THANK YOU VERY MUCH!
^_^
离线yqmangel

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只看该作者 11楼 发表于: 2009-08-23
I WAS LOOKING FOR IT FOR A LONG TIME,THANK YOU
^_^
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