矿山测量在地下水利建设的改进毕业论文外文翻译.pdf
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1、外文文献 IMPROVEMENTS INMINESURVEY I NGIN UNDERROUND HYDROTECHNICALCON STRUCTION V.A.Zhilkin UDC 528.514:627.8 The construction of underground structures for hydropower and hydro technical projects is a very complex type of work.For major high-head hydropower schemes,the underground works,unlike those f
2、or transportation,are characterized by very complex arrangements with different shapes and overall dimensions,and are set at different elevations and angles relative to one another.The group of underground structures for a high-head hydroelectric station are presented in Fig.i.Improvements to and ap
3、plication of new construction technology for underground hydropower and hydro technical structures,necessitate raising the organizational standard of mine surveying work,which is a component of all the technological processes.They require a higher accuracy compared to other work carried out in hydro
4、 technical construction.At the present stage of development of underground hydropower construction,the complexity of execution,and the volume of mine surveying work are increasing,and the times allotted for their completion are diminishing.As a result,there arises the necessity for further developme
5、nt and improvement in mine-surveying methods and in means of measurement in underground hydro technical construction.The object of the principal mine-surveying work,both surface and underground,is to ensure concurrent execution of the whole complex of rock tunneling activities within a single mathem
6、atical link-up and system of coordinates and elevations,for all structures of the hydropower project with different grouping systems.Lay-out and surveying work is a complex and laborious part of mine-surveying measurements and calculations,because underground hydro technical structures have complica
7、ted mathematical configurations.Divergent and convergent zones,inclined headrace and tailrace tunnels,emergency spillways with varying slopes and cross sections,bell mouthed zones of fan shaped profile,etc.Carefully prepared mine-surveying documentation establishes the standards for the completed un
8、derground hydraulic structure.It is capable of solving any technical questions in practice,which may arise during operation or reconstruction of under-ground structures.On underground hydro technical-construction projects,mine surveying is carried out in accordance with Manual VSN-160-69,which was b
9、rought into use on projects of underground hydropower construction by order of the Minister for Power and Electrification of the USSR,No.145,dated Sept.3,1971.In the construction of underground hydraulic structures,raising the accuracy of mine surveying and the productivity of labor in its execution
10、,also the standard of the work carried out,depend in large measure on the refinement of the optical devices and instruments used.The most common procedure in mine-surveying work in building underground hydraulic structures is linear measurement,it is,therefore,very important to standardize this work
11、,using highly accurate instruments.Instruments used for measuring distances are numerous and of different designs.In this category are various Invar wires,tapes,phase-type range finders,equipment for a short-based parallax method of measuring distances e.g.,2 m long,highly accurate Invar staffs with
12、 end marks.Of the phase-type range finders,we use the mine-surveying photoelemeter MSD-Im,which guarantees measurement of distances up to 500 m with a standard deviation of(5-10-6D).It is used for laying out the underground survey transverses.The devices use d for linear measurements may also take t
13、he form of optical attachments placed on standard mine-surveying instruments.Special marks and rods may serve as the objects for sighting.Falling into this category are:the differential range finders DD-5 and DNR-06,which are used to make tachometric surveys when finishing excavation cuts at portals
14、 and shaft platforms.Recently,on projects of the State Trust for Construction of Special Hydraulic Structures(Gidrospetsstrol),basic reducing tachometers BRT-006 have begun to be used,and the accuracy of work and the output of mine surveyors have improved.Fig.i.Schematic arrangement of the undergrou
15、nd structures for the Nortek hydroelectric station,I)Hydroelectric-station building;2)ist stage conduits;3)2nd stage conduits;4)permanent headrace tunnels;5)transport tunnel No.3;6)intermediate headrace tunnel;7)transport tunnel;8)emergency spillway with surface intake;9)transport tunnel;i0)loading
16、tunnel;ll)emergency tunnel with submerged intake;12)3rd horizon construction tunnel;13)transport tunnel No.i;14)2nd horizon construction tunnel;15)ist horizon construction tunnel;16)per permanent water intakes.In underground excavations,for measuring and setting out horizontal and vertical angles,an
17、d for determining directions,optical theologizes of varying accuracy are being used.Modern theologizes are complex optical instruments which enable readings to be made with a single microscope;this is common to both circles and located alongside the telescope,an important factor for underground work
18、.The theologizes of latest manufacture are fitted with high-quality short-length telescopes,which can be turned through the zenith with either end,which is of special value under the restricted conditions encountered underground(Table i).Highly accurate theologizes TEO-010,TI,and T2 guarantee measur
19、ement of angles with a SD of They are used for establishing the underground mine-surveying datum.Theologizes T5,Tusk,T5v,TI5,T30,and OMT30 guarantee measurement of angles with a SD of they fall into the engineering category,and are used for laying out and surveying underground.Industry has now comme
20、nced putting out new angle-measuring instruments with improved technical and operational characteristics,viz.,2T2,2T5k,2T5,2TlSk,which are being introduced on projects in the USSR.It can now be concluded that angle-measuring instruments being used in mine surveying work meet the current level of und
21、erground hydro technical construction.Use is made of levels of various designs and accuracies in establishing datums for levels in mine surveying,in carrying out underground leveling work,and in setting out the design slopes for tying-ln levels for underground setting out and surveying.In recent yea
22、rs,levels NI,N2,NS3,N3,and NS4(Table 2)are being used in underground hydro technical construction.The use of optical compensators instead of spirit levels on leveling instruments has raised the output of underground work.In establishing orientation points for shafts and dictums for underground mine-
23、surveying the directional angles are determined by gyroscopic theologies with automatic tracking,type GI-B2mmanufactured in Hungary.Consequent with the increase in shaft depths at high-head hydropower schemes,when constructing very long diversion tunnels the geometric methods formerly used for estab
24、lishing orienting points do not produce the required accuracy for mine-surveying work.The way out of the situation was to adopt a physical method of establishing orientation points,using gyroscopic theologizes.In practice,gyrotheologizes ensure determination of bearings with a SD of to 12.In transfe
25、rring elevations into shafts and to benchmarks for the underground mine-surveying datum system,automatic range finders types DA-2 are used.The transfer of a b e n c h m a r k is carried out twice.The discrepancy between the two values in practice does not exceed Ah=(0.01+0.0002H),where is the depth
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