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Baker Hughes Accelerates Product Development with HyperWorks-Driven Simulation
技术
- 分析与建模 - 数字孪生/模拟
- 传感器 - 电表
适用行业
- 水泥
- 石油和天然气
适用功能
- 产品研发
- 质量保证
用例
- 虚拟原型与产品测试
- 虚拟现实
服务
- 系统集成
- 测试与认证
挑战
贝克休斯是一家领先的油田服务、产品、技术和系统供应商,在验证先进油井衬管方面面临着重大挑战。该公司的客户在充满挑战的市场中运营,在深水和北极地区进行海上钻探,完善页岩和水力压裂技术,并始终遵守严格的环境和安全法规。他们还必须应对技术挑战,例如更深的井、极端压力和温度以及非常规地质变化。产品可靠性、安全性、上市速度和成本控制对于行业的成功至关重要。为了保持竞争力,石油和天然气服务公司必须确保可靠地制造正确的产品,并领先于竞争对手满足客户的期望。创建具有成本效益、安全且可靠的可扩展尾管悬挂器所面临的挑战需要在整个产品开发过程中使用模拟。
关于客户
贝克休斯是全球领先的油田服务、产品、技术和系统供应商之一。该公司在全球运营,拥有近 59,000 名员工,总部位于德克萨斯州休斯顿。最近,该公司通过为世界石油和天然气行业销售服务和高度创新的产品而获得了 214 亿美元的年收入。贝克休斯的客户在充满挑战的市场中运营,在深水和北极地区进行海上钻探,完善页岩和水力压裂技术,并始终遵守严格的环境和安全法规。他们还必须应对技术挑战,例如更深的井、极端压力和温度以及非常规地质变化。
解决方案
Baker Hughes 转向 FEA 仿真,该仿真结合了 Altair 的 HyperWorks 计算机辅助工程工具,以充分利用仿真在产品开发周期中的诸多优势。该公司依靠七步方法来验证和验证可扩展尾管悬挂器虚拟仿真模型。开发人员构建了 FEA 模型,然后根据过去的经验、判断、手工计算和类似产品的测试数据验证该模型。如有必要,可以对模型进行细化,并利用实验设计 (DOE) 技术执行可选的可靠性评估步骤,从而进行更多的细化和优化并重新验证。接下来,根据物理原型测试数据验证仿真模型结果。分析师在构建、验证和验证数据的步骤之间来回进行,直到结果代表真实行为并与物理原型测试产生高质量的相关性。一旦准备好经过验证的仿真模型,就可以充满信心地完成进一步的设计评估和性能预测。
运营影响
数量效益
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