US2004237627A1PendingUtilityA1

Method and apparatus for monitoring fluid flow

Priority: Aug 1, 2002Filed: Jun 15, 2004Published: Dec 2, 2004
Est. expiryAug 1, 2022(expired)· nominal 20-yr term from priority
Inventors:Peter Jochum
G01N 30/32G01N 2030/324
52
PatentIndex Score
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Cited by
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Claims

Abstract

An apparatus for monitoring fluid flow within a high pressure liquid chromatography system. The apparatus includes a pump for supplying a system flow of eluent to the system, a chromatography column, a flow splitting device having a first restrictor fluidly connecting the pump and the chromatography column, a second restrictor fluidly connecting the pump to a waste line, a first fluid pressure sensor monitoring a system fluid pressure upstream of the first restrictor, and a second fluid pressure sensor monitoring a column fluid pressure downstream of the first restrictor. A method of using the apparatus for fluid flow control is also disclosed.

Claims

exact text as granted — not AI-modified
1 . An apparatus for monitoring flow within a fluid flow system, said apparatus comprising: 
 a pump for supplying a system flow of eluent to the system;    a fluid flow component;    a flow splitting device including a first restrictor and a second restrictor, said first restrictor fluidly connecting said pump and said fluid flow component and said second restrictor fluidly connecting said pump to a waste line;    a first fluid pressure sensor monitoring a system fluid pressure upstream of said first restrictor;    a second fluid pressure sensor monitoring a component fluid pressure downstream of said first restrictor; and    a calculating device for calculating a quotient Q based upon said system fluid pressure and said component fluid pressure.    
     
     
         2 . The apparatus of  claim 1  further comprising: 
 a supply line fluidly connecting said pump to said splitting device; and  
 a feed line fluidly connecting said first restrictor to said fluid flow component;  
 wherein said first fluid pressure sensor coupled to said supply line for monitoring said system fluid pressure and said second fluid pressure sensor is coupled to said feed line for monitoring said component fluid pressure.  
 
     
     
         3 . The apparatus of  claim 1  wherein said calculating device calculates said quotient Q based upon said system fluid pressure and said component fluid pressure as follows:  
         Q=P   sys /( P   sys   −P   col )  
       wherein P sys  is said system fluid pressure and P col  is said component fluid pressure.  
     
     
         4 . The apparatus of  claim 1  further comprising a regulating device for regulating a required system flow necessary to provide a desired component flow based upon said system fluid pressure and said component fluid pressure.  
     
     
         5 . The apparatus of  claim 3  further comprising a regulating device for regulating a required system flow F sys  necessary to provide a desired component flow F col  as follows:  
         F   sys   =F   col ×(1 +S )× Q    
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         6 . The apparatus of  claim 3  further comprising a regulating device for regulating a required system flow F sys  necessary to provide a desired component flow F col  as follows:  
         F   sys   =F   col ×(1 +S×Q )  
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         7 . The apparatus of  claim 3  further comprising a regulating device for regulating a required system flow F sys  necessary to provide a desired component flow F col  as follows:  
       
         F 
         sys 
         =F 
         col 
         ×S×Q  
       
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         8 . An apparatus for monitoring flow within a high pressure liquid chromatography system, said apparatus comprising: 
 a pump for supplying a system flow of eluent to the system;    a fluid flow component;    a flow splitting device including a first restrictor and a second restrictor, said first restrictor fluidly connecting said pump and said fluid flow component and said second restrictor fluidly connecting said pump to a waste line;    a first fluid pressure sensor monitoring a system fluid pressure upstream of said first restrictor; and    a differential fluid pressure sensor monitoring a pressure differential between said system fluid pressure and a component fluid pressure downstream of said first restrictor.    
     
     
         9 . The apparatus of  claim 8  further comprising a calculating device for calculating a quotient Q based upon said system fluid pressure and said pressure differential as follows:  
       
         Q=P 
         sys 
         /P 
         diff  
       
       wherein P sys  is said system fluid pressure and P diff  is said pressure differential.  
     
     
         10 . The apparatus of  claim 9  further comprising a regulating device for regulating a required system flow F sys  necessary to provide a desired component flow F col  as follows:  
         F   sys   =F   col ×(1 +S )× Q    
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         11 . The apparatus of  claim 9  further comprising a regulating device for regulating a required system flow F sys  necessary to provide a desired component flow F col  as follows:  
         F   sys   =F   col ×(1 +S×Q )  
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         12 . The apparatus of  claim 9  further comprising a regulating device for regulating a required system flow F sys  necessary to provide a desired component flow F col  as follows:  
       
         F 
         sys 
         =F 
         col 
         ×S×Q  
       
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         13 . A method for regulating a desired component flow within a high pressure liquid chromatography system comprising the steps of: 
 supplying an eluent via a supply line to a flow splitting device at a system flow rate;    distributing said eluent from said splitting device via a feed line to a fluid flow component;    monitoring a system fluid pressure in said supply line;    monitoring a component fluid pressure in said feed line; and    calculating a quotient Q based upon said system fluid pressure and said component fluid pressure.    
     
     
         14 . The method of  claim 13  wherein said calculating step is accomplished by calculating said quotient Q as follows:  
         Q=P   sys /( P   sys   −P   col )  
       wherein P sys  is said system fluid pressure and P col  is said component fluid pressure.  
     
     
         15 . The method of  claim 14  further comprising the step of regulating a required system flow based upon quotient Q.  
     
     
         16 . The method of  claim 14  wherein said regulating step is accomplished by regulating said required system flow F sys  as follows:  
         F   sys   =F   col ×(1 +S )× Q    
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         17 . The method of  claim 14  wherein said regulating step is accomplished by regulating said required system flow F sys  as follows:  
         F   sys   =F   col ×(1 +S×Q )  
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         18 . The method of  claim 14  wherein said regulating step is accomplished by regulating said required system flow F sys  as follows:  
       
         F 
         sys 
         =F 
         col 
         ×S×Q  
       
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         19 . The method of  claim 13  wherein said calculating step is accomplished by calculating said quotient Q as follows:  
       
         Q=P 
         sys 
         /P 
         diff  
       
       wherein P sys  is said system fluid pressure and P diff  is the differential pressure between said system fluid pressure and said component fluid pressure.  
     
     
         20 . The method of  claim 19  further comprising the step of regulating a required system flow based upon quotient Q.  
     
     
         21 . The method of  claim 19  wherein said regulating step is accomplished by regulating said required system flow F sys  as follows:  
         F   sys   =F   col ×(1 +S )× Q    
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         22 . The method of  claim 19  wherein said regulating step is accomplished by regulating said required system flow F sys  as follows:  
         F   sys   =F   col ×(1 +S×Q )  
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         23 . The method of  claim 19  wherein said regulating step is accomplished by regulating said required system flow F sys  as follows:  
       
         F 
         sys 
         =F 
         col 
         ×S×Q  
       
       wherein F col  is the desired component flow, S is the split ratio of said flow splitting device, and Q is said quotient.  
     
     
         24 . The method of  claim 13  further comprising the step of adjusting said system flow rate to provide said desired component flow rate.  
     
     
         25 . The apparatus of  claim 1  wherein said fluid flow component is a column.  
     
     
         26 . The apparatus of  claim 25  wherein said column is a chromatography column.  
     
     
         27 . The apparatus of  claim 8  wherein said fluid flow component is a column.  
     
     
         28 . The apparatus of  claim 27  wherein said column is a chromatography column.

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