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冬季牧场放牧牛的热平衡:模型应用

Thermal balance of cattle grazing winter range: model application.

作者信息

Keren E N, Olson B E

机构信息

Department of Animal and Range Sciences, Montana State University, Bozeman, 59717, USA.

出版信息

J Anim Sci. 2006 May;84(5):1238-47. doi: 10.2527/2006.8451238x.

Abstract

Beef cattle grazing semiarid foothill rangeland of the Northern Rockies during winter may be exposed to cold temperatures and high winds while grazing pastures with low nutritional value. Cattle can physiologically and behaviorally respond to the changing environment to lower their metabolic requirements and reduce the effects of cold exposure. Requirements of grazing cattle may be overpredicted with models developed in controlled settings that do not account for energy-conserving behaviors. We refined a simple thermal balance equation to model heat exchange of free-ranging cattle. We accounted for the complex interactions between animal behavior and the changing natural environment by applying the insulation characteristics of the cattle's tissue and coat to a simple geometric shape of an asymmetric ellipsoid at different orientations to the sun and wind. We compared the model predictions with heat production measured in 3 studies, and in all cases the model predictions were similar to those reported. Model simulations indicate behaviors, such as lying and orientation to the sun, mitigated the effects of extreme weather. For many combinations of winter weather variables, metabolic requirements increased only slightly due to cold exposure of mature beef cattle in a near-maintenance state. The results indicate that solar radiation contributes strongly to the thermal balance of a cow. Thus, previous models that do not account for the irradiative environment may overestimate metabolic requirements of cattle acclimated to grazing winter range.

摘要

冬季,在落基山脉北部半干旱山麓牧场放牧的肉牛,在啃食营养价值低的牧草时,可能会遭遇低温和大风天气。牛可以通过生理和行为反应来适应不断变化的环境,从而降低其代谢需求,减轻寒冷暴露的影响。在不考虑节能行为的受控环境中开发的模型,可能会高估放牧牛的需求。我们改进了一个简单的热平衡方程,以模拟自由放养牛的热交换。通过将牛的组织和皮毛的隔热特性应用于一个不对称椭球体的简单几何形状,该椭球体在不同的朝向太阳和风的方向上,我们考虑了动物行为与不断变化的自然环境之间的复杂相互作用。我们将模型预测结果与三项研究中测得的产热进行了比较,在所有情况下,模型预测结果与报告的结果相似。模型模拟表明,躺卧和朝向太阳等行为减轻了极端天气的影响。对于许多冬季天气变量的组合,处于接近维持状态的成年肉牛因寒冷暴露,其代谢需求仅略有增加。结果表明,太阳辐射对奶牛的热平衡有很大贡献。因此,以前不考虑辐射环境的模型可能高估了适应冬季放牧的牛的代谢需求。

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