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Evaluation of conductive cooling of lactating dairy cows under controlled environmental conditions

机译:在受控环境条件下评估泌乳奶牛的传导性冷却

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摘要

Cooling systems used to reduce heat stress in dairy operations require high energy, water usage, or both. Steady increases in electricity costs and reduction of water availability and an increase in water usage regulations require evaluation of passive cooling systems to cool cows and reduce use of water and electricity. A study was conducted to evaluate the use of heat exchangers buried 25 cm below the surface as components in a conductive system for cooling cows. Six cows were housed in environmentally controlled rooms with tie-stall beds, which were equipped with a heat exchanger and filled with 25 cm of either sand or dried manure. Beds were connected to supply and return lines and individually controlled. Two beds (one per each kind of bedding material) constituted a control group (water off), and the other 4 (2 sand and 2 dried manure) used water at 7℃ passing through the heat exchangers (water on). The experiment was divided in 2 periods of 40 d, and each period involved 3 repetitions of 3 different climates (hot and dry, thermo neutral, and hot and humid). Each cow was randomly assigned to a different treatment after each repetition was over. Sand bedding remained cooler than dried manure bedding in all environments and at all levels of cooling (water on or off). Bed temperatures were lower and heat flux higher during the bed treatment with sand and water on. We also detected a reduction in core body temperatures, respiration rates, rectal temperatures, and skin temperatures of those cows during the sand and water on treatment. Feed intake and milk yield numerically increased during the bed treatment with sand and water on for all climates. No major changes were observed in the lying time of cows or the composition of the milk produced. We conclude that use of heat exchangers is a viable adjunct to systems that employ fans, misters, and evaporative cooling methods to mitigate effects of heat stress on dairy cows. Sand was superior to dried manure as a bedding material in combination with heat exchangers.
机译:用于减少乳制品生产中的热应力的冷却系统需要高能耗,高用水量,或两者兼而有之。电力成本的稳定增长和水供应的减少以及水使用法规的增加要求对被动冷却系统进行评估,以冷却奶牛并减少水和电的使用。进行了一项研究,以评估埋在地表以下25厘米处的热交换器在冷却牛的传导系统中的使用。将六头奶牛饲养在带拉力失速床的环境受控房间内,这些房间配有热交换器,并装有25厘米的沙子或干肥料。床被连接到供应和返回线并且被单独地控制。两张床(每种垫料一种)构成一个对照组(不通水),另外四张床(2个沙土和2个干肥料)使用的温度为7℃的水通过换热器(开水)。实验分为2个40 d周期,每个周期涉及3种不同气候(炎热和干燥,热中性,炎热和潮湿)的3次重复。每次重复结束后,将每头母牛随机分配给不同的治疗方法。在所有环境和所有冷却水平下(开水或关水),沙垫仍比干粪垫凉。在铺有沙子和水的床层处理过程中,床层温度较低,热通量较高。我们还检测到在处理沙子和水的过程中,这些母牛的核心体温,呼吸频率,直肠温度和皮肤温度降低了。在各种气候条件下,在加砂和放水的条件下进行底床处理期间,采食量和产奶量均呈数字增加。没有观察到母牛产蛋时间或产奶成分的重大变化。我们得出结论,对于使用风扇,喷雾器和蒸发冷却方法来减轻热应激对奶牛的影响的系统,使用热交换器是可行的辅助手段。与换热器结合使用时,沙土作为床褥材料优于干粪肥。

著录项

  • 来源
    《Journal of dairy science》 |2015年第3期|1759-1771|共13页
  • 作者单位

    School of Animal and Comparative Biomedical Sciences, University of Arizona, Tucson 85719;

    School of Animal and Comparative Biomedical Sciences, University of Arizona, Tucson 85719;

    Department of Agricultural and Biosystems Engineering, University of Arizona, Tucson 85719;

    Department of Biological Systems Engineering, University of Wisconsin-Madison, Madison 53706;

    Conco Technology Inc., Chandler, AZ 85226;

    Conco Technology Inc., Chandler, AZ 85226;

    GEA Farm Technologies, Naperville, IL 60563;

    Department of Agricultural Sciences, Northwest Missouri State University, Maryville 64468;

    School of Animal and Comparative Biomedical Sciences, University of Arizona, Tucson 85719;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    conductive cooling; heat stress; dairy cow;

    机译:传导冷却;热应激;奶牛;
  • 入库时间 2022-08-17 23:23:34

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