US2021188663A1PendingUtilityA1

Apparatus, System and Method for Resource Distribution

Assignee: DEKA PRODUCTS LPPriority: Sep 19, 2012Filed: Aug 3, 2020Published: Jun 24, 2021
Est. expirySep 19, 2032(~6.1 yrs left)· nominal 20-yr term from priority
H02J 2105/44H02J 7/50E04H 3/08E04H 2001/1283C02F 1/18E04H 1/1222Y02A20/212E04H 1/1205C02F 1/14B01D 1/0035Y02W10/37E04H 3/02C02F 1/041E04H 9/10C02F 1/04B01D 5/006C02F 1/16F01K 17/04H02J 7/0013
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Claims

Abstract

A system for the distribution of resources. The system includes a housing, at least one power generation source connected to the housing, a power control and distribution system and at least one water distillation device, wherein power from at least one power generation source powers that at least a water distillation device.

Claims

exact text as granted — not AI-modified
1 - 19 . (canceled) 
     
     
         20 . A system for the distribution of resources comprising:
 a housing comprising:
 a water source: 
 at least one water distillation device receiving source water from the water source and producing water for distribution, the system comprising:
 a first conductivity sensor measuring a first conductance of the water for distribution; 
 a divert fluid line fluidly connected to the first conductivity sensor; and 
 a product line fluidly connected to the first conductivity sensor; 
 
 a second conductivity sensor measuring a second conductance of the water for distribution received from the product line; 
 a first product reservoir fluidly connected to the second conductivity sensor; and a water dispenser; and 
 wherein water for distribution enters the product line when the first conductance is below a first predetermined value and water for distribution enters the first product reservoir when the second conductance is below a second predetermined value. 
   
     
     
         21 . The system for the distribution of resources of  claim 20  wherein water for distribution enters the divert line when the first conductance is at or above a first predetermined value and water for distribution enters the first product reservoir when the second conductance is below a second predetermined value. 
     
     
         22 . The system for the distribution of resources of  claim 20  wherein water for distribution does not enter the water storage device when the second conductance is below a second predetermined value. 
     
     
         23 . The system for the distribution of resources of  claim 21  wherein the first predetermined value is 20 microsiemens per centimeter. 
     
     
         24 . The system for the distribution of resources of  claim 22  wherein the second predetermined value is 20 microsiemens per centimeter. 
     
     
         25 . The system for the distribution of resources of  claim 20  wherein the housing further comprises:
 at least one power generation source connected to the housing; 
 a power control and distribution system; and 
 
       wherein power from the at least one power generation source powers the at least one water distillation device. 
     
     
         26 . The system for the distribution of resources of  claim 20  wherein the first product reservoir comprising a water liquid level sensor. 
     
     
         26 . The system for the distribution of resources of  claim 20  wherein the first product reservoir comprising a water line connected to a check valve. 
     
     
         27 . The system for the distribution of resources of  claim 20  further comprising a source reservoir fluidly connected to the water source and the water distillation device, the source reservoir comprising at least two liquid level sensors. 
     
     
         28 . The system for the distribution of resources of  claim 25 , wherein the at least one power generation source is a Stirling generator. 
     
     
         29 . A method for the distribution of water comprising:
 providing a water source, a water distillation device comprising a first conductivity sensor, a divert water line, a second conductivity sensor receiving water from the water distillation device, and a water storage device receiving water from the second conductivity sensor   receiving source water from the water source;   distilling the source water to produce water for distribution;   measuring a first conductance of the water for distribution with a first conductivity sensor;   allowing the water to reach the second conductivity sensor when the first conductance is below a first predetermined value;   measuring a second conductance of the water for distribution with the second conductivity sensor; and   allowing the water to flow to the water storage device when the second conductance is below a second predetermined value.   
     
     
         30 . The method for the distribution of water of  claim 29  further comprising diverting the water for distribution when the first conductance is at or above a first predetermined value. 
     
     
         31 . The method for the distribution of water of  claim 29  further comprising blocking the water from reaching the water storage device when the second conductance is at or above a second predetermined value. 
     
     
         32 . The method for the distribution of water of  claim 29  further comprising blocking the water from reaching the water storage device when the second conductance is at or above a second predetermined value. 
     
     
         33 . The method for the distribution of water of  claim 29  wherein the first predetermined value is 20 microsiemens per centimeter. 
     
     
         34 . The method for the distribution of water of  claim 29  wherein the second predetermined value is 20 microsiemens per centimeter. 
     
     
         35 . The method for the distribution of water of  claim 29 , wherein is further provided:
 a power generation source; and   a power control and distribution system;   
       and the method further comprises
 powering the water distillation device with the power generation source. 
 
     
     
         36 . The method for the distribution of water of  claim 35 , wherein the power generation source is a Stirling generator.

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