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Automatic control technology for vacuum stability.

机译:自动控制技术可确保真空稳定性。

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摘要

In conventional vacuum milking system, vacuum pump/motor runs at full speed and load regardless of any change in the actual air flow used for milking cows or washing pipelines. Excessive vacuum pump capacity is admitted through a vacuum controller unit which is used to maintain milking vacuum stability. Considerable energy has been wasted by the conventional vacuum milking system on diary farms. It is estimated that up to 70 percent of electrical energy is wasted during milking and perhaps 50 percent during washing. There is a potential for reducing electrical energy used by vacuum pump/motor.; Energy can be saved and electrical demand can be reduced by regulating vacuum pump capacity according to air flow usage. In this thesis, two vacuum milking systems with variable speed pump have been developed and analyzed. The two systems are a vacuum milking system with adjustable speed drive plus volume reserve (Adjustable speed drive) and vacuum milking system with adjustable speed drive plus vacuum and volume reserve (ASD-dual vacuum milking system). The adjustable speed drive plus volume reserve can reduce the energy consumption to the minimum level, but the system could not maintain vacuum stability within the generally accepted limits. ASD-dual vacuum milking system can both maintain the milking vacuum stability within the limits and reduce energy usage. Experimental results show that vacuum stability in the ASD-dual vacuum milking system is better than both the conventional vacuum milking system and the vacuum milking system with adjustable speed drive plus volume reserve. The ASD-dual vacuum system can reduce energy consumption and demand by 60 percent during milking.; The economic measurements for the investment of the ASD-dual vacuum milking system are much better than the ASD plus volume reserve system. For the dairy farm used and assumptions made in this thesis, the payback period is about 3 years, the net present value of the investment ranges from {dollar}4679 to {dollar}7504 and the internal rate of return ranges from 33.3% to 37.4% for the ASD-dual vacuum milking system respectively.
机译:在传统的真空挤奶系统中,真空泵/电动机以全速和全负荷运行,而不管用于挤奶牛或清洗管道的实际空气流量如何变化。真空控制器的真空泵容量过大,该真空控制器用于维持挤奶的真空稳定性。奶牛场的常规真空挤奶系统浪费了相当多的能量。据估计,挤奶过程中浪费了多达70%的电能,清洗过程中浪费了约50%的电能。有减少真空泵/电动机所用电能的潜力。通过根据空气流量的使用来调节真空泵的容量,可以节省能源并减少电力需求。本文开发并分析了两种带变速泵的真空挤奶系统。这两个系统是具有可调速驱动器和容积储备(可调速驱动器)的真空挤奶系统和具有可调速驱动器和容积与真空储备的真空挤奶系统(ASD-双真空挤奶系统)。可调速驱动器加上容积储备可以将能耗降低到最低水平,但是系统无法将真空稳定性保持在公认的极限内。 ASD双真空挤奶系统既可以将挤奶真空度保持在极限范围内,又可以减少能耗。实验结果表明,ASD双真空挤奶系统中的真空稳定性优于常规真空挤奶系统和具有可调速驱动和容积储备的真空挤奶系统。 ASD双真空系统可以在挤奶期间将能耗和需求降低60%。 ASD双真空挤奶系统的投资在经济方面要优于ASD加容积储备系统。对于所使用的奶牛场和本文的假设,投资回收期约为3年,投资的净现值介于4679美元至7504美元之间,内部收益率介于33.3%至37.4之间%分别用于ASD双真空挤奶系统。

著录项

  • 作者

    Guo, Fangjiang.;

  • 作者单位

    Cornell University.;

  • 授予单位 Cornell University.;
  • 学科 Engineering Agricultural.
  • 学位 Ph.D.
  • 年度 1991
  • 页码 202 p.
  • 总页数 202
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业工程;
  • 关键词

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