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    • 1. 发明申请
    • SYSTEM AND METHOD FOR INJECTING A FLUID ADDITIVE INTO A FLUID DISPENSATION SYSTEM
    • 将流体添加剂注入流体分配系统的系统和方法
    • US20140174546A1
    • 2014-06-26
    • US14059010
    • 2013-10-21
    • Virid Services, LLC
    • Jon Lips
    • F17D3/01A01M7/00A01C23/00
    • G05D11/02A01C23/007A01C23/042A01M7/0092B05B1/20B05B7/28B05B7/32B05B12/004B05B12/14F17D3/01Y10T137/0324Y10T137/87676
    • A method for operating a fluid additive control system to inject a fluid additive into a fluid dispensation system is provided. The method includes receiving a first control signal indicating that a fluid dispensation device within the fluid dispensation system is active, and determining a fluid additive quantity based upon the identity of the fluid dispensation device. The method also includes activating a fluid additive injection system, where the fluid additive dispensation system injects the fluid additive into the fluid dispensation system in response to the activation. The method further includes receiving a second control signal from the fluid additive injection system when the fluid additive quantity for the zone has been injected into the fluid dispensation system, and deactivating the fluid additive dispensation system in response to the second control
    • 提供了一种用于操作流体添加剂控制系统以将流体添加剂注入流体分配系统的方法。 该方法包括接收指示流体分配系统内的流体分配装置是有效的第一控制信号,以及基于流体分配装置的身份确定流体添加剂量。 该方法还包括激活流体添加剂注射系统,其中流体添加剂分配系统响应激活将流体添加剂注入流体分配系统。 所述方法还包括:当所述区域的流体添加量已被注入到所述流体分配系统中时,从所述流体添加剂注入系统接收第二控制信号,以及响应于所述第二控制使所述流体添加剂分配系统停用
    • 5. 发明授权
    • Fluid drainage system and methods
    • 流体排水系统及方法
    • US08950418B2
    • 2015-02-10
    • US13864064
    • 2013-04-16
    • Virid Services, LLC
    • Jon Lips
    • G01F15/00F16L55/07A01G25/00
    • A01G25/16A01G25/00F16L55/07G05B15/02G05D7/0623G05D7/0635Y10T137/0318Y10T137/1298Y10T137/1353Y10T137/1963
    • A method for operating a fluid drainage control system to drain a fluid from a fluid dispensation system is provided. The method includes determining a first ambient air temperature, determining if the first ambient air temperature is less than a predetermined drain set point temperature, isolating the fluid dispensation system from a fluid supply source by closing a supply valve located inside a temperature controlled area in response to the first ambient air temperature being less than the predetermined drain set point temperature, and draining the fluid from the fluid dispensation system by opening a drain valve subsequent to closing the supply valve. The method further includes determining a second ambient air temperature, determining if the second ambient air temperature is greater than a predetermined operation set point temperature, closing the drain valve in response to the second ambient air temperature being greater than the predetermined operation set point temperature, and opening the supply valve subsequent to closing the drain valve.
    • 提供了一种用于操作流体排出控制系统以从流体分配系统排出流体的方法。 该方法包括确定第一环境空气温度,确定第一环境空气温度是否小于预定的排水设定点温度,通过关闭位于温度受控区域内的供应阀来响应流体分配系统与流体供应源的隔离 到第一环境空气温度小于预定排水设定点温度,并且在关闭供应阀之后打开排放阀,从流体分配系统排出流体。 该方法还包括确定第二环境空气温度,确定第二环境空气温度是否大于预定操作设定点温度,响应于第二环境空气温度大于预定操作设定点温度来关闭排水阀, 并且在关闭排水阀之后打开供给阀。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR INJECTING A FLUID ADDITIVE INTO A FLUID DISPENSATION SYSTEM
    • 将流体添加剂注入流体分配系统的系统和方法
    • US20160011603A1
    • 2016-01-14
    • US14685138
    • 2015-04-13
    • Virid Services, LLC
    • Jon Lips
    • G05D11/02B05B12/00B05B7/28
    • G05D11/02A01C23/007A01C23/042A01M7/0092B05B1/20B05B7/28B05B7/32B05B12/004B05B12/14F17D3/01Y10T137/0324Y10T137/87676
    • A method for operating a fluid additive control system to inject a fluid additive into a fluid dispensation system is provided. The method includes receiving a first control signal indicating that a fluid dispensation device within the fluid dispensation system is active, and determining a fluid additive quantity based upon the identity of the fluid dispensation device. The method also includes activating a fluid additive injection system, where the fluid additive dispensation system injects the fluid additive into the fluid dispensation system in response to the activation. The method further includes receiving a second control signal from the fluid additive injection system when the fluid additive quantity for the zone has been injected into the fluid dispensation system, and deactivating the fluid additive dispensation system in response to the second control
    • 提供了一种用于操作流体添加剂控制系统以将流体添加剂注入流体分配系统的方法。 该方法包括接收指示流体分配系统内的流体分配装置是有效的第一控制信号,以及基于流体分配装置的身份确定流体添加剂量。 该方法还包括激活流体添加剂注射系统,其中流体添加剂分配系统响应激活将流体添加剂注入流体分配系统。 所述方法还包括:当所述区域的流体添加量已被注入到所述流体分配系统中时,从所述流体添加剂注入系统接收第二控制信号,以及响应于所述第二控制使所述流体添加剂分配系统停用
    • 8. 发明申请
    • FLUID DRAINAGE SYSTEM AND METHODS
    • 流体排水系统和方法
    • US20150305257A1
    • 2015-10-29
    • US14617252
    • 2015-02-09
    • Virid Services, LLC
    • Jon Lips
    • A01G25/16G05B15/02G05D7/06
    • A01G25/16A01G25/00F16L55/07G05B15/02G05D7/0623G05D7/0635Y10T137/0318Y10T137/1298Y10T137/1353Y10T137/1963
    • A method for operating a fluid drainage control system to drain a fluid from a fluid dispensation system is provided. The method includes determining a first ambient air temperature, determining if the first ambient air temperature is less than a predetermined drain set point temperature, isolating the fluid dispensation system from a fluid supply source by closing a supply valve located inside a temperature controlled area in response to the first ambient air temperature being less than the predetermined drain set point temperature, and draining the fluid from the fluid dispensation system by opening a drain valve subsequent to closing the supply valve. The method further includes determining a second ambient air temperature, determining if the second ambient air temperature is greater than a predetermined operation set point temperature, closing the drain valve in response to the second ambient air temperature being greater than the predetermined operation set point temperature, and opening the supply valve subsequent to closing the drain valve.
    • 提供了一种用于操作流体排出控制系统以从流体分配系统排出流体的方法。 该方法包括确定第一环境空气温度,确定第一环境空气温度是否小于预定的排水设定点温度,通过关闭位于温度受控区域内的供应阀来响应流体分配系统与流体供应源的隔离 到第一环境空气温度小于预定排水设定点温度,并且在关闭供应阀之后打开排放阀,从流体分配系统排出流体。 该方法还包括确定第二环境空气温度,确定第二环境空气温度是否大于预定操作设定点温度,响应于第二环境空气温度大于预定操作设定点温度来关闭排水阀, 并且在关闭排水阀之后打开供给阀。