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    • 67. 发明申请
    • ORCHESTRATED ENERGY
    • 经过处理的能量
    • WO2017173406A1
    • 2017-10-05
    • PCT/US2017/025606
    • 2017-03-31
    • TENDRIL NETWORKS, INC.HUMMON, MarissaBLACK, ChrisMEIER, JakeSULLIVAN, PatrickFELDMAN, Brett
    • HUMMON, MarissaBLACK, ChrisMEIER, JakeSULLIVAN, PatrickFELDMAN, Brett
    • F24F11/00G05B13/00G05B13/02G05B13/04G05D23/00G06Q10/00
    • A facility providing systems and methods for managing and optimizing energy consumption and/or production is provided. The facility provides techniques for optimizing energy-consuming and energy-producing systems to meet specified demands or goals in accordance with various constraints. The facility relies on models to generate an optimization for an energy system. In order to use generic models to simulate and optimize energy consumption for an energy system, the generic models are calibrated to properly represent or approximate conditions of the energy system during the optimization period. After the appropriate models have been calibrated for a given situation using one or more modeling parameter sets, the facility can simulate inputs and responses for the corresponding system. The facility uses the generated simulations to generate a plan or control schedule to be implemented by the energy system during the optimization period.
    • 提供了用于管理和优化能量消耗和/或生产的系统和方法的设施。 该设施提供了优化能源消耗和能源生产系统的技术,以满足各种限制条件下的特定要求或目标。 该设施依靠模型为能源系统生成优化。 为了使用通用模型来模拟和优化能源系统的能源消耗,通用模型经过校准以在优化期间正确表示或近似能源系统的状况。 在使用一个或多个建模参数集针对给定情况校准了适当的模型后,该设施可以模拟相应系统的输入和响应。 该设施使用生成的模拟生成计划或控制计划,以便在优化期间由能源系统执行。
    • 68. 发明申请
    • LOAD CELL ASSEMBLY
    • 负载电池组件
    • WO2017142844A1
    • 2017-08-24
    • PCT/US2017/017731
    • 2017-02-13
    • STRESS-TEK, INC.REICHOW, KeithZIMMERMAN, Bill
    • REICHOW, KeithZIMMERMAN, Bill
    • G01G3/14G01G19/12
    • G01G19/12B60D1/015G01G3/1412G01G19/021
    • A cast load cell comprising a load sensing portion integrally cast with a first mounting portion. The load sensing portion has a flexure portion spaced apart from the first mounting portion by a flexure gap. The load sensing portion has at least one sensor cavity above at least a portion of the flexure gap. A second mounting portion is integrally cast with the load sensing portion above the flexure gap. A load sensor is connected to the load sensor portion and positioned within the sensor cavity above a portion of the flexure gap. The first mounting portion, the load sensing portion, and the second mounting portion define an integral, low-profile, weld-free, substantially homogenous unitary cast member.
    • 一种铸造测力传感器,包括与第一安装部分一体铸造的载荷感测部分。 负载感测部分具有通过挠曲间隙与第一安装部分隔开的挠曲部分。 负载感测部分在挠曲间隙的至少一部分上方具有至少一个传感器腔室。 第二安装部分与挠性间隙上方的载荷感测部分整体铸造。 载荷传感器连接到载荷传感器部分并且位于挠曲间隙的一部分上方的传感器腔体内。 第一安装部分,负载传感部分和第二安装部分限定了一体的,低轮廓的,无焊接的,基本上均匀的整体铸造构件。
    • 69. 发明申请
    • HYBRID WASTE TUBE ASSEMBLY
    • 混合垃圾管总成
    • WO2017004263A1
    • 2017-01-05
    • PCT/US2016/040195
    • 2016-06-29
    • EXOTIC METALS FORMING COMPANY LLC
    • MACCONNELL, JamesD'AMBROSIO, Karl
    • F16L25/01
    • F16L25/01B64D11/00F16L23/06
    • The present technology is directed to a conductive hybrid waste tube system that comprises tube bodies (12), tube end fittings (18), 0-rings (30), coupling sleeves (44), end fitting adapters and couplings (40). The tube bodies (12) and tube end fittings (18) are attached and constitute a tube section. O-rings (30) are installed between flanges (26a, 26b) on the end fittings (18) and the sleeve (44) positioned over the end fittings (18) of adjoining tube sections (12). If the tubes end fittings (18) are of different designs, an end fitting adapter may be used along with an additional O-ring to provide pressure sealing. The coupling is installed over the completed assembly to prevent the joint from separating. The O-rings/sleeve combination provides the ability for the tube sections to translate and rotate relative to each other while the coupling prevents the joint from excessive translation.
    • 本技术涉及一种导电混合废物管系统,其包括管体(12),管端配件(18),O形环(30),联接套管(44),端部配件适配器和联接件(40)。 管体(12)和管端配件(18)被连接并构成管段。 O形环(30)安装在端部配件(18)上的凸缘(26a,26b)和位于相邻管部分(12)的端部配件(18)之上的套筒(44)之间。 如果管端配件(18)具有不同的设计,则端配件适配器可以与附加的O形环一起使用以提供压力密封。 联轴器安装在完整的组件上,以防止接头分离。 O形圈/套筒组合提供了管段相对于彼此平移和旋转的能力,同时联接器防止接头过度平移。