EN 60953-1-1995 en Rules for Steam Turbine Thermal Acceptance Tests Part 1 Method A High Accuracy for Large Condensing Steam Turbines《汽轮机热力验收试验规则 第1部分 方法A 适用于大容量凝汽式汽轮机的高精度》.pdf
《EN 60953-1-1995 en Rules for Steam Turbine Thermal Acceptance Tests Part 1 Method A High Accuracy for Large Condensing Steam Turbines《汽轮机热力验收试验规则 第1部分 方法A 适用于大容量凝汽式汽轮机的高精度》.pdf》由会员分享,可在线阅读,更多相关《EN 60953-1-1995 en Rules for Steam Turbine Thermal Acceptance Tests Part 1 Method A High Accuracy for Large Condensing Steam Turbines《汽轮机热力验收试验规则 第1部分 方法A 适用于大容量凝汽式汽轮机的高精度》.pdf(86页珍藏版)》请在麦多课文档分享上搜索。
1、CENELEC EM*b0*953-3 95 3Li04583 0373293 396 = BRITISH STANDARD Rules for steam turbine thermal acceptance tests Part 1. Method A: High accuracy for large condensing steam turbines The European Standard EN 60953-1 : 1995 has the status of a British Standard ICs 27.040 NO COPYING WITHOUT BSI PERMISSIO
2、N EXCEPT AS PERMITTED BY COPYRIGHT LAW BS EN 60953-1 : 1996 JEC 953-1 : 1990 BS EN 60953-1 : 1996 AmdNo. This British Standard, having been prepared under the direction of the Engineering Sector Board, was published under the authority of the Standards Board and comes into effect on 15 June 1996 O B
3、SI 1996 Date Text affected The following BSI references reiate to the work on this standard: Committee reference MCW13 Draft announced in BSZ News December 1995 ISBN O 680 26623 6 Committees responsible for this British Standard The preparation of this British Standard was entrusted to Technical Com
4、mittee MCFY13, Steam turbines, upon which the following bodies were represented Association of Consuiting Engineers Electricity Supply Industry in England and Wales North of Scotland Hydroelectric Board Power Generation Association (BEAMA Ltd.) South of Scotland Electricity Board CENELEC EN*bD*953-L
5、 95 3404583 0273295 2b9 BS EN 60953-1 : 1996 Contents Committees responsible National foreword page Inside front cover Il Foreword 2 Text of EN 60953-1 3 O BSI 1996 1 CENELEC EN*bO*953-L 95 W 3404583 017329b OT5 D BS EN 60953-1 : 1996 National foreword This British Standard has been prepared by Tech
6、nical Committee MCW13 and is the English language version of EN 609531 : 1995 Rules for steam tu furthermore, procedures are recommended for treating cases where these specifications cannot be met. CENELEC EN*bO*953-L 95 3404583 OL3300 35b = Page 4 EN 60953-1 : 1995 When good-standardized instrument
7、ation and procedures are applied in a test, the measuring uncertainty of the result will usually amount to 0.9% to 1.2% for a large fossil fuel fired condensing unit, to 1.1 O/o to 1.4% for a nuclear unit and to 1.5% to 2.5% for back pressure, extraction and small condensing turbines. it is possible
8、 to reduce these values by additional improvement in instrumen- tation, primarily by additional measurements of primary mass flows and/or calibration of measuring devices for primary mass flow. 2) Main difference between Methods A and B In Method A, much more detailed information concerning the prep
9、aration and conduct of the tests and the measuring techniques are contained for guidance of the parties to the test than in Method B. In Method B, the detailed treatment of these objectives is left somewhat more to the discretion and decisions of the participants and necessitates sufficient experien
10、ce and expertise on their part. 3) Guiding principles The requirements concerning the preparation and conditions of the test and especially such conditions of the test as duration, deviations and constancy of test conditions and acceptable differences between double measurements are more stringent i
11、n Method A. The test should be conducted preferably within eight weeks after the beginning of the operation. It is the intent during this period to minimize performance deterioration and risk of damage to the turbine. Preliminary tests including enthalpy drop tests should be made during this period
12、to monitor HP and IP turbine section performance. However, these tests do not provide LP section performance and for this reason it is imperative to conduct the acceptance tests as soon as practicable. Whatever the case, when using Method A, if an enthalpy drop test indicates a possible deterioratio
13、n of the HP or iP section, or if the plant conditions require that the tests be postponed more than four months after the initial start, then the acceptance tests should be delayed. An adjustment of the heat rate test results to start-up enthalpy drop efficiencies or for the effects of aging is not
14、permitted when using Method A. If the test has to be postponed, Method A proposes that the test be carried out after the first major internal inspection; several methods are proposed for establishing the approximate condition of the turbine prior to the tests. 4) a) Measurement of electrical power I
15、nstruments and methods of measurement In addition to the conditions required for the measurement of electric power, which are similar in both methods, Method A requires a check of the instruments by a comparison measurement after each test run; the permissible difference between double measurements
16、is limited to O. 15%. For the measurement of main flows the use of calibrated pressure difference devices is required in Method A. The application of a device not covered by international standardization, the throat-tap nozzle, is recommended therein and details of design and application are given.
17、b) Flow measurement The calibration of these devices shall be conducted with the upstream and downstream piping and flow-straightener. Methods for the necessary extrapolation of the discharge coefficient from the calibration values are given. in Method B standardized pressure-difference devices are
18、normally applied for flow measurement. Calibration is recommended where a reduction of overall measuring uncertainty CENELEC EN*b0*953-3 95 = 3404583 O373303 292 Page 5 EN 60953-1 : 1995 is desirable. Double or multiple measurement of primary flow is recommended for the reduction of measuring uncert
19、ainty and a method for checking the compatibility is described. c) Pressure measurement The requirements and recommendations for pressure measurements are essentially similar. Only the methods for the measurement of exhaust-pressure of condensing turbines difer to some extent. d) Temperature measure
20、ment The requirements are essentially similar in both methods. However detail requirements are more stringent in Method A: - calibration before and after the test, - double measurement of the main temperature with 0.5 K maximum difference, - thermocouples with continuous leads, - required overall ac
21、curacy. e) Steam quality measurements Methods A and B are identical. 5) Evaluation of tests The preparatory work for the evaluation and calculation of the test results is covered in a very similar manner in Methods A and B. However, quantitative requirements are more stringent in Method A. Method B
22、contains some proposals for handling cases where some requirements have not been met to avoid rejection of the test. In addition, Method B contains detailed methods for calculation of measuring uncertainty values of measured variables and test results. Method B recommends other methods for conductin
23、g and evaluating of the tests after the specified period and without a previous inspection. 6) Correction of test results and comparison with guarantees The correction of test results to guarantee conditions is covered in both Methods A and B. Method A provides for the comparison of test results to
24、guarantee without consideration of Method B gives a broader spectrum of correction procedures. Furthermore, the measuring measuring uncertainty. uncertainty of the result is taken into account in the guarantee comparison. 7) Proposalsfor application Since the acceptance test method to be applied has
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