农业工程学报
農業工程學報
농업공정학보
2013年
24期
56-62
,共7页
仿真计算%试验%计算流体力学%液力缓速器%空转损耗
倣真計算%試驗%計算流體力學%液力緩速器%空轉損耗
방진계산%시험%계산류체역학%액력완속기%공전손모
computer simulations%experiments%computational fluid dynamics%hydrodynamic retarder%idling loss
为了形成液力缓速器空转损耗的分析计算方法,该文以自主开发的THB40液力缓速器样机为基础,系统分析并绘制了产生空转损耗的流场结构图,建立了全流道空转损耗计算模型,运用CFD技术分别对全工况范围内均布的16个转速点进行空转损耗全流道仿真计算;采用消除机械摩擦损耗的组合式台架试验方法进行空转损耗测试;对比分析全流道仿真计算结果与台架测试结果,相对误差率在11.8%以内,吻合度较高,证实了全流道仿真计算结果的可靠性,为进一步开展液力缓速器优化设计提供了分析计算的方法及理论基础。
為瞭形成液力緩速器空轉損耗的分析計算方法,該文以自主開髮的THB40液力緩速器樣機為基礎,繫統分析併繪製瞭產生空轉損耗的流場結構圖,建立瞭全流道空轉損耗計算模型,運用CFD技術分彆對全工況範圍內均佈的16箇轉速點進行空轉損耗全流道倣真計算;採用消除機械摩抆損耗的組閤式檯架試驗方法進行空轉損耗測試;對比分析全流道倣真計算結果與檯架測試結果,相對誤差率在11.8%以內,吻閤度較高,證實瞭全流道倣真計算結果的可靠性,為進一步開展液力緩速器優化設計提供瞭分析計算的方法及理論基礎。
위료형성액력완속기공전손모적분석계산방법,해문이자주개발적THB40액력완속기양궤위기출,계통분석병회제료산생공전손모적류장결구도,건립료전류도공전손모계산모형,운용CFD기술분별대전공황범위내균포적16개전속점진행공전손모전류도방진계산;채용소제궤계마찰손모적조합식태가시험방법진행공전손모측시;대비분석전류도방진계산결과여태가측시결과,상대오차솔재11.8%이내,문합도교고,증실료전류도방진계산결과적가고성,위진일보개전액력완속기우화설계제공료분석계산적방법급이론기출。
A hydraulic retarder is a damper system which inputs mechanical energy, transforms it, and outputs heat. Due to its advantages of brake torque, smooth braking, low noise, long life and compact structure, a hydraulic retarder has been widely applied in heavy vehicles. The research and application on the hydraulic retarder abroad has been carried out earlier, and its technique is more developed. However, since the hydraulic retarder belongs to high-tech products, its high price and the technology blockade of related foreign research institutions makes it only applied to top-grade imported cars in China. At present, the hydrodynamic retarder research of related national enterprises and scientific establishments has just been started, and the level of independent research and development is still low. Therefore, to actively develop hydrodynamic retarder products with proprietary intellectual property rights, and to steadily improve its function has practical meaning for the improvement of the competiveness of the national retarder industry. When a hydraulic retarder is in braking condition, its control system will fill the working chambers of the stator and rotor with a certain amount of oil, which driven by the rotor, will generate a scroll loss effect, thereby producing braking effects on moving vehicles;in its non-braking condition, which is also called idling, the working chambers of the stator and rotor are filled with air, and similar to the braking condition, the air driven by the rotor will also generate a scroll loss effect, which is referred to as an idling loss. As shown in Figure 1, the idling loss rate directly determines the economy of a hydraulic retarder. In order to form a reliable idling loss analysis and calculation method, this paper was based on a certain type of self-developed hydrodynamic retarder prototype. This paper carried out system analysis and drew the technology schematic of idling loss, and then established the calculation model of whole-flow-passage idling loss, carried out whole-flow-passage simulation on an idling loss under 16 rotor speed conditions with the application of CFD technology, and finally proceeded with idling loss measurements with the combined bench test method which can eliminate mechanical friction loss. With the results compared and analyzed, the result of the whole-flow-passage simulation is found to be in agreement with that of the bench test, and the relative error is within 11.8%, a relatively high accuracy. Therefore, this paper proves the reliability of the whole-flow-passage simulation calculation method, and provides a reliable calculation method for the further study of the hydraulic retarder idling loss reduction.