完整后设资料纪录
DC 栏位语言
dc.contributor.author黄金树en_US
dc.contributor.authorJin-Shu Huangen_US
dc.contributor.author陈俊勋en_US
dc.contributor.authorChiun-Hsun Chenen_US
dc.date.accessioned2014-12-12T02:26:09Z-
dc.date.available2014-12-12T02:26:09Z-
dc.date.issued2000en_US
dc.identifier.urihttp://140.113.39.130/cdrfb3/record/nctu/#NT890489079en_US
dc.identifier.urihttp://hdl.handle.net/11536/67580-
dc.description.abstract本文目的在模拟往复式压缩机运转过程中冷媒的状态与压缩机的性能。模拟方法为利用能量平衡与质量平衡方程式来描述压缩机内各控制容积的状态,并配合气体状态方程式、流量方程式、汽缸容积方程式、热交换方程式、阀片动态方程式,与有效流通面积、有效受力面积、热对流系数等经验公式数据,以及压缩机的几何尺寸、材料性质、马达特性、工作流体、及操作条件等参数来模拟压缩机的动态性能。由模拟结果可得各控制容积内冷媒在各种不同的曲柄转角时的压力、温度、质量,进而掌握影响往复式压缩机性能的各种现象,如:排气时的过压(over pressure)、吸气时的低压(under pressure)、阀片动态、阀片延迟关闭造成的阀座通道回流以及冷媒进入汽缸前的吸气过热等。除计算压缩机性能动态外,本文还比较不同的控制容积数目、冷媒直接流入吸入消音器比例和理想气体与实际气体三种情况对模拟结果的影响。参数研究方面则包括:、出入口条件、马达转速、阀片弹性系数以及活塞与汽缸壁间隙的影响,对压缩机整体性能的影响。zh_TW
dc.description.abstractThe main purpose of this thesis is to develop a simulation code to describe the performance of a reciprocating compressor, whose working fluid is refrigerant. The mass conservation and energy conservation equations are applied to solve pressure, mass, and temperature of refrigerant in the compressor. To solve mass and energy conservation equations, a set of equations is needed. They are equations of state, orifice flow, cylinder volume, heat transfer, valve motion equations. some semi-empirical relations, such as orifice coefficient, convection heat transfer coefficient, geometric size of the compressor, material properties of the compressor, working fluid and operating conditions, are required as well. From the simulation, it can obtain the pressure, temperature and mass of the refrigerant as a function of crank angle for each control volume. From these data, many situations affecting reciprocating compressor performance can be identified. Those include the over-pressure in discharge period, under-pressure in suction period, motion of valve, refrigerant back-flow through orifice, and pre-heat of refrigerant before flowing into cylinder. A set of parametric study is carried out to see their influence on the compressor performance. Those varying parameters are the number of control volumes, the ratio of refrigerant directly flowing into suction muffle, the applications of real- and ideal-gas equation of state, inlet and outlet conditions, rotational speed of motor, spring coefficient of valve, and gap between piston and cylinder wall.en_US
dc.language.isozh_TWen_US
dc.subject压缩机zh_TW
dc.subject往复式zh_TW
dc.subject性能zh_TW
dc.subject控制容积zh_TW
dc.subjectcompressoren_US
dc.subjectreciprocatingen_US
dc.subjectperformanceen_US
dc.subjectcontrol volumeen_US
dc.title往复式压缩机性能模拟zh_TW
dc.titleSimulation of Reciprocating Compressor Performanceen_US
dc.typeThesisen_US
dc.contributor.department机械工程学系zh_TW
显示于类别:Thesis