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首页> 外文期刊>Animal Production Science >Large rotary dairies achieve high cow throughput but are not more labour efficient than medium-sized rotaries.
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Large rotary dairies achieve high cow throughput but are not more labour efficient than medium-sized rotaries.

机译:大型旋转式奶牛场可实现较高的奶牛生产量,但劳动效率却不比中型旋转式猪场高。

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摘要

It was hypothesised that large rotary dairies (>60 clusters) are not more operator efficient than medium-sized rotaries (40-60 clusters). This was tested by collecting and analysing milking data, during peak and late lactation, from block calving herds milked in rotary dairies fitted with electronic milk meters. Data were collected from a total of 61 unique farms around New Zealand, with rotary dairies ranging in size from 28 to 80 clusters, for two 5-day periods during spring (September-November 2010; 47 farms; average milk yield 23.1 kg/day) and autumn (February-April 2011; 60 farms; average milk yield 16.4 kg/day). A telephone survey was conducted to collect basic farm details: size, land area, the number of herds managed (including hospital herds), number of operators in the dairy and total labour input. A site visit was conducted to collect data such as the number of bails/stalls over the entrance and exit of the platform. The herd management software on each farm was programmed to record similar fields for each of the six machine manufacturers represented. Variables recorded included cow, date, identification time, bail number, milk yield, milking duration, and average milk flow rate. Calculations were performed to determine the number of cows milked and milk harvested per hour as well as the operator efficiency values for these measures and an estimate of cluster utilisation. Mixed models were used to determine the relationship between the dependent variables, cows milked per hour, milk harvested per hour, cows milked per operator per hour, milk harvested per operator per hour, and cluster utilisation, and the independent variables collected. Cows milked and milk harvested per hour increased linearly with rotary size, during both spring and autumn and there was a quadratic relationship between operator efficiency measures and rotary size, which peaked at ~60 clusters. Cluster utilisation, the amount of time clusters were harvesting milk out of the plant running time, was estimated at 46+or-6%. Larger rotary dairies on average achieved greater throughput; however, they were not more operator efficient than medium-sized rotaries. Thus, large rotary dairies are best suited to farms where the additional throughput is required.
机译:假设大型旋转奶牛场(> 60个簇)不比中型旋转牛场(40-60个簇)更有效率。通过在高峰和晚期泌乳期间收集和分析挤奶数据进行了测试,这些数据是在装有电子式奶量计的旋转式奶牛场中对牛群进行产犊。在春季期间(2010年9月至11月,为期两个5天),从新西兰各地总共61个独特的农场收集数据,其中旋转奶场的规模在28至80个集群之间; 47个农场;平均牛奶产量为23.1千克/天)和秋季(2011年2月至4月; 60个农场;平均产奶量16.4千克/天)。进行了电话调查以收集基本的农场详细信息:规模,土地面积,管理的畜群数量(包括医院畜群),乳业经营者数量和总劳动力投入。进行了现场访问,以收集数据,例如平台入口和出口上的吊钩/踏板的数量。每个农场的畜群管理软件均经过编程,可以记录所代表的六家机器制造商各自的相似领域。记录的变量包括母牛,日期,识别时间,保释数,产奶量,挤奶持续时间和平均牛奶流量。进行计算以确定每小时挤奶和收获的奶牛数量,以及这些措施的操作员效率值以及群集利用率的估计值。混合模型用于确定因变量,每小时挤奶的母牛,每小时收获的奶,每小时每个操作员每小时的母牛挤奶,每个操作员每小时的牛奶收获,集群利用率以及收集的自变量之间的关系。在春季和秋季,每小时挤奶和每小时收获的奶量随旋转大小呈线性增加,并且操作员效率测度与旋转大小之间存在二次关系,峰值约为60个簇。集群利用率,集群从工厂运行时间中收获牛奶的时间估计为46%或6%。平均而言,较大的旋转奶牛场可以实现更高的吞吐率;但是,它们在操作员效率上并不比中型旋翼机高。因此,大型旋转奶牛场最适合需要额外生产量的农场。

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