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    • 1. 发明申请
    • Amplitude correction for seismic recordings
    • 地震记录振幅校正
    • US20060133207A1
    • 2006-06-22
    • US11287960
    • 2005-11-28
    • Robbert VossenAndrew CurtisJeannot Trampert
    • Robbert VossenAndrew CurtisJeannot Trampert
    • G01V1/00
    • G01V1/36G01V2210/57G01V2210/58
    • A new approach is described based on reciprocity for estimating acquisition-related effects, which has several advantages over conventional surface-consistent processing techniques: (i) It can be applied to complete recordings, hence does not require the isolation of primary reflections in the data, (ii) no assumptions are imposed on the subsurface, and (iii) it is applicable to multi-component data. The application of reciprocity requires symmetric data acquisition, i.e. identical source and receiver patterns, identical locations, and the source orientations have to be identical to the receiver components. Besides reciprocity, additional constraints are required to determine the lateral source and receiver amplitude variations fully. Criteria based on minimizing total energy differences between adjacent common source and common receiver gathers, and in common offset panels of the medium response are applied.
    • 基于对等估计采集相关效应的新方法进行了描述,与传统的表面一致处理技术相比具有以下优点:(i)可以应用于完整的记录,因此不需要在数据中隔离主反射 ,(ii)不对地下施加假设,(iii)适用于多组分数据。 互易的应用需要对称数据采集,即相同的源和接收器模式,相同的位置,并且源取向必须与接收器组件相同。 除了互惠之外,还需要额外的约束来完全确定横向源和接收机的幅度变化。 基于相邻公共源和公共接收器集合之间的总能量差异的最小化以及在媒体响应的公共偏移面板中的标准被应用。
    • 2. 发明授权
    • Amplitude correction for seismic recordings
    • 地震记录振幅校正
    • US07333393B2
    • 2008-02-19
    • US11287960
    • 2005-11-28
    • Robbert Van VossenAndrew CurtisJeannot Trampert
    • Robbert Van VossenAndrew CurtisJeannot Trampert
    • G01V1/36
    • G01V1/36G01V2210/57G01V2210/58
    • A new approach is described based on reciprocity for estimating acquisition-related effects, which has several advantages over conventional surface-consistent processing techniques: (i) It can be applied to complete recordings, hence does not require the isolation of primary reflections in the data, (ii) no assumptions are imposed on the subsurface, and (iii) it is applicable to multi-component data. The application of reciprocity requires symmetric data acquisition, i.e. identical source and receiver patterns, identical locations, and the source orientations have to be identical to the receiver components. Besides reciprocity, additional constraints are required to determine the lateral source and receiver amplitude variations fully. Criteria based on minimizing total energy differences between adjacent common source and common receiver gathers, and in common offset panels of the medium response are applied.
    • 基于对等估计采集相关效应的新方法进行了描述,与传统的表面一致处理技术相比具有以下优点:(i)可以应用于完整的记录,因此不需要在数据中隔离主反射 ,(ii)不对地下施加假设,(iii)适用于多组分数据。 互易的应用需要对称数据采集,即相同的源和接收器模式,相同的位置,并且源取向必须与接收器组件相同。 除了互惠之外,还需要额外的约束来完全确定横向源和接收机的幅度变化。 基于相邻公共源和公共接收器集合之间的总能量差异的最小化以及在媒体响应的公共偏移面板中的标准被应用。
    • 5. 发明授权
    • Anti-vibration cantilevered handle for a blowing apparatus
    • 用于吹风装置的防振悬臂
    • US08756754B2
    • 2014-06-24
    • US13139255
    • 2008-12-11
    • John AllenAndrew Curtis
    • John AllenAndrew Curtis
    • A47L9/32F04D25/00F04B17/05
    • B25F5/006B27B17/0033
    • A hand carried power tool (100) is presented which includes a vibration-producing power unit (15) interconnected with an elongate handle (20). The handle (20) has a base end (24) coupled to the power unit (15) and an opposite free end (28) configured for manual gripping. Additionally a vibration damping member (50), which permits vibration-induced movement between the base end (24) of the handle (20) and the power unit (15), interstitially located between the base end (24) of the handle (20) and the power unit (15). Furthermore, a resilient biasing member (40) is coupled between the elongate handle (20) and the power unit (15). The biasing member (40) connects to the handle (20) at a location distant from the base end (24) of the handle (20) and the biasing member (40) is configured to dampen vibration-induced relative movement between the base end (24) of the handle (20) and the power unit (15).
    • 提供了一种携带手电的工具(100),其包括与细长手柄(20)互连的振动产生动力单元(15)。 手柄(20)具有联接到动力单元(15)的基端(24)和被配置用于手动夹紧的相对的自由端(28)。 另外,允许在手柄(20)的基端(24)和动力单元(15)之间的振动引起的运动的振动阻尼构件(50)间隙地位于手柄(20)的基端(24)之间 )和动力单元(15)。 此外,弹性偏置构件(40)联接在细长手柄(20)和动力单元(15)之间。 偏置构件(40)在远离手柄(20)的基端(24)的位置处连接到手柄(20),并且偏置构件(40)构造成抑制振动引起的相对运动 (20)的动力单元(24)和动力单元(15)。
    • 7. 发明申请
    • ANTI-VIBRATION CANTILEVERED HANDLE FOR A BLOWING APPARATUS
    • 用于吹风装置的抗振动手柄
    • US20110289721A1
    • 2011-12-01
    • US13139255
    • 2008-12-11
    • John AllenAndrew Curtis
    • John AllenAndrew Curtis
    • B08B5/00
    • B25F5/006B27B17/0033
    • A hand carried power tool (100) is presented which includes a vibration-producing power unit (15) interconnected with an elongate handle (20). The handle (20) has a base end (24) coupled to the power unit (15) and an opposite free end (28) configured for manual gripping. Additionally a vibration damping member (50), which permits vibration-induced movement between the base end (24) of the handle (20) and the power unit (15), interstitially located between the base end (24) of the handle (20) and the power unit (15). Furthermore, a resilient biasing member (40) is coupled between the elongate handle (20) and the power unit (15). The biasing member (40) connects to the handle (20) at a location distant from the base end (24) of the handle (20) and the biasing member (40) is configured to dampen vibration-induced relative movement between the base end (24) of the handle (20) and the power unit (15).
    • 提供了一种手持式电动工具(100),其包括与细长手柄(20)互连的振动产生动力单元(15)。 手柄(20)具有联接到动力单元(15)的基端(24)和被配置用于手动夹紧的相对的自由端(28)。 另外,允许在手柄(20)的基端(24)和动力单元(15)之间的振动引起的运动的振动阻尼构件(50)间隙地位于手柄(20)的基端(24)之间 )和动力单元(15)。 此外,弹性偏置构件(40)联接在细长手柄(20)和动力单元(15)之间。 偏置构件(40)在远离手柄(20)的基端(24)的位置处连接到手柄(20),并且偏置构件(40)构造成抑制振动引起的相对运动 (20)的动力单元(24)和动力单元(15)。
    • 10. 发明授权
    • System and method for estimating seismic material properties
    • 用于估计地震材料性质的系统和方法
    • US06903999B2
    • 2005-06-07
    • US10181234
    • 2001-01-19
    • Andrew CurtisJohan Olof Anders RobertssonRemco Muijs
    • Andrew CurtisJohan Olof Anders RobertssonRemco Muijs
    • G01V1/20G01V1/28G01V1/30G01V1/32G01V1/36
    • G01V1/286G01V1/20G01V1/30G01V1/32G01V1/364G01V2210/42
    • A method for estimating near-surface material properties in the vicinity of a locally dense group of seismic receivers is disclosed. The method includes receiving seismic data that has been measured by a locally dense group of seismic receivers. Local derivatives of the wavefield are estimated such that the derivatives are centered at a single location preferably using the Lax-Wendroff correction. Physical relationships between the estimated derivatives including the free surface condition and wave equations are used to estimate near-surface material properties in the vicinity of the receiver group. Another embodiment of the invention is disclosed wherein the physical relationships used to estimate material properties are derived from the physics of plane waves arriving at the receiver group, and the group of receivers does not include any buried receivers.
    • 公开了一种用于估计局部密集的地震接收机组附近的近表面材料特性的方法。 该方法包括接收由局部密集的地震接收器组测量的地震数据。 估计波场的局部导数,使得导数优选地使用Lax-Wendroff校正在单个位置为中心。 使用估计的导数(包括自由表面条件和波动方程)之间的物理关系来估计接收器组附近的近地表面材料特性。 公开了本发明的另一个实施例,其中用于估计材料属性的物理关系是从到达接收器组的平面波的物理学得出的,并且接收器组不包括任何掩埋的接收器。