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Wind-turbine simulator(WFD800PLUS)風(fēng)力渦輪機模擬器(valenian)
WFD800plus風(fēng)力渦輪機故障測試平臺專為模擬和測試風(fēng)力發(fā)電系統(tǒng)中各種常見的機械和電氣故障而開發(fā)。該平臺可進行并聯(lián)齒輪箱、行星齒輪箱、滾動軸承、發(fā)電機故障、傳感器故障等模擬,幫助研究人員和技術(shù)開發(fā)人員更深入地了解故障特征和影響。The WFD800plus wind turbine fault testing platform is developed for simulating and testing various common mechanical and electrical faults in wind power generation systems. Parallel gearboxes, planetary gearboxes, rolling bearings, generator fault simulation, sensor faults, etc. can be conducted to enable researchers and technical developers to gain a deeper understanding of fault characteristics and impacts.
故障診斷研究:為故障診斷技術(shù)研究提供實驗平臺,通過采集試驗臺在故障條件下的各種數(shù)據(jù),例如電信號、機械振動信號、溫度信號等,開發(fā)和驗證故障診斷算法和方法。
維護培訓(xùn):可用于培訓(xùn)風(fēng)電運維人員,使其在模擬故障環(huán)境中進行操作實踐,熟悉故障診斷和維護流程,提高維護技能和應(yīng)對實際故障的能力。
優(yōu)化設(shè)計:通過模擬不同的故障情況,分析系統(tǒng)的薄弱環(huán)節(jié),為風(fēng)力發(fā)電系統(tǒng)的優(yōu)化設(shè)計提供依據(jù),改進系統(tǒng)結(jié)構(gòu)和控制策略,提升系統(tǒng)的可靠性和容錯能力。
教學(xué)演示:在教學(xué)中,幫助學(xué)生直觀地了解風(fēng)力發(fā)電系統(tǒng)的工作原理、故障產(chǎn)生機理及處理方法,提升學(xué)生的實踐能力和專業(yè)知識的掌握。
功能
針對常見的轉(zhuǎn)子機械故障,例如軸不對中、轉(zhuǎn)子不平衡、機械基礎(chǔ)松動等進行模擬實驗。
可選配激光對中裝置,用于精確的軸對中和對中測試。
平行軸齒輪箱失效機理研究:直齒的不同失效形式,例如點蝕、磨損、裂紋和斷裂。
可根據(jù)具體需求定制缺齒、缺齒等常見故障。
滾動軸承故障研究:齒輪箱內(nèi)部軸承及支撐軸承的各種故障形式,例如軸承內(nèi)圈故障、軸承外圈故障、軸承保持架故障、軸承滾動體故障以及軸承綜合故障。
行星齒輪箱故障研究:太陽輪、行星輪、大齒圈故障類型:缺齒、磨損、斷齒、裂紋;
發(fā)電機故障研究:此外,還可以選擇不同類型的故障發(fā)電機,并結(jié)合電流和電壓傳感器,研究發(fā)電機轉(zhuǎn)子故障、發(fā)電機轉(zhuǎn)子不平衡故障、發(fā)電機軸承故障、發(fā)電機轉(zhuǎn)子斷條故障、發(fā)電機匝間短路故障。
The WFD800plus wind turbine fault testing platform is developed for simulating and testing various common mechanical and electrical faults in wind power generation systems. Parallel gearboxes, planetary gearboxes, rolling bearings, generator fault simulation, sensor faults, etc. can be conducted to enable researchers and technical developers to gain a deeper understanding of fault characteristics and impacts.
Research on Fault Diagnosis: Providing an experimental platform for the study of fault diagnosis technology, developing and verifying fault diagnosis algorithms and methods by collecting various data from the test bench under fault conditions, such as electrical signals, mechanical vibration signals, temperature signals, etc.
Maintenance training: It can be used to train wind power operation and maintenance personnel, allowing them to practice operations in simulated fault environments, familiarize themselves with fault diagnosis and maintenance processes, improve maintenance skills and the ability to respond to actual faults.
Optimization design: By simulating different fault situations, analyzing the weak links of the system, providing a basis for the optimization design of wind power generation systems, improving the system's structure and control strategies, and enhancing the system's reliability and fault tolerance.
Teaching demonstration: In teaching, help students intuitively understand the working principle, fault generation mechanism, and handling methods of wind power generation systems, enhance their practical ability and mastery of professional knowledge.
function
Conduct simulation experiments on common rotor mechanical faults, such as shaft misalignment, rotor imbalance, and loose mechanical foundations.
An additional optional laser centering device is used for precise axis alignment and alignment testing.
Research on the Failure Mechanism of Parallel Shaft Gearboxes: Different Failure Forms of Straight Teeth, such as pitting, wear, cracks, and breakage
Common faults such as missing teeth and missing teeth can be customized according to specific needs.
Research on Rolling Bearing Faults: Different forms of faults in the internal bearings and supporting bearings of gearboxes, such as bearing inner ring faults, bearing outer ring faults, bearing cage faults, bearing rolling element faults, and comprehensive bearing faults.
Research on planetary gearbox faults: sun gear, planetary gear, large ring gear, fault types, missing teeth, wear, broken teeth, cracks;
Generator fault research: In addition, different types of faulty generators can be selected and combined with current and voltage sensors to study generator rotor, generator rotor imbalance faults, generator bearing faults, generator rotor bar breakage faults, generator turn to turn short circuit faults
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