IP Library › Granted Patent US 9,302,849
Granted Patent B2
US 9,302,849 · App. 14/391,078 · Granted Apr 5, 2016

Method of controlling operation of a pneumatic conveying system

Inventors: Niklas Mattias Forestier (Göteborg, SE); Martin Alfrost (Göteborg, SE)
Assignee: Envac AB
B65F5/005B65G53/66
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Quick Facts
Patent No.
US 9,302,849
App. No.
14/391,078
Granted
Apr 5, 2016
Kind
B2
Abstract

In a method of controlling operation of a pneumatic conveying system ( 1 ) including a source ( 6 ) for generating transport air flow in an active state, transport piping ( 4 ) and multiple material inlet points in at least one branch (B 1 , B 2 , B 3 , B 4 ) of the transport piping and communicating with the system through discharge valves ( 3 ) controlling emptying of associated material inlet points, material transport conditions of the system are sensed for each inlet point emptying operation, the material transport conditions are sensed at one or more remote locations from the material inlet points and a valve open time for the material inlet point discharge valves is determining for each emptying operation and based on a processing of feedback from material transport condition sensors ( 11, 12 ) of the system. A pneumatic conveying system as well as a system ( 16 ) for controlling operation of the pneumatic conveying system are also provided.

Claims (31)

1. A method of controlling operation of a pneumatic conveying system having a source for generating, in an active state thereof, material transport pressure in the conveying system, transport piping and multiple material inlet points being provided in each of a number of branches of the transport piping and communicating with the conveying system through associated discharge valves controlling an emptying operation of associated material inlet points, wherein transport air flow is enabled in the branches by opening associated air inlets, the method comprising:

sensing, for each of a number of material inlet point emptying operations, material transport conditions of the conveying system;

sensing the material transport conditions using means for sensing and determining pressure and air speed of the conveying system at one or more remote locations with regard to the material inlet points; and

determining, for each of the number of material inlet point emptying operations, a valve open time for the discharge valve of the material inlet point based on a processing of sensed and determined pressure and air speed values.

2. The method according to claim 1 , further comprising:

sensing pressure and air speed in each of the number of branches of the conveying system; and

determining a valve open time for the discharge valves of the branches based on the processing of the sensed and determined pressure and air speed values.

3. The method according to claim 1 , further comprising:

sensing local pressure and air-speed values for several material inlet points using sensors positioned at one common location remote from the material inlet points for collecting pneumatically transported material.

4. The method according to claim 3 , further comprising:

determining a valve open time for a first discharge valve of each of the number of branches of the conveying system based on the processing of feedback from the sensors.

5. The method according to claim 4 , further comprising:

determining a valve open time for successive discharge valves of each of the number of branches of the conveying system based on the processing of feedback from the sensors.

6. A pneumatic conveying system comprising:

a source for generating transport air flow in an active state thereof;

transport piping coupled to the source;

multiple material inlet points that are provided in at least one branch of the transport piping and that communicate with the conveying system through associated discharge valves controlling an emptying operation of associated material inlet points;

means for sensing and determining system pressure and air speed provided at one or more remote locations with regard to the material inlet points of the conveying system and arranged in communication with the transport piping for sensing material transport conditions of the conveying system;

means for processing sensed and determined pressure and air speed values;

means for determining a valve open time for the discharge valves of the transport piping; and

discharge valve control means for outputting discharge valve activating signals in dependence upon determined valve open times.

7. The pneumatic conveying system according to claim 6 , further comprising:

a pressure sensor for sensing the system pressure during inlet point emptying operations; and

an air speed sensor for sensing air speed through the system during inlet point emptying operations.

8. The pneumatic conveying system according to claim 7 , wherein the pressure and air speed sensors are positioned at one common location remote from the material inlet points for collecting pneumatically transported material.

9. A system for controlling operation of a pneumatic conveying system including a source for generating transport air flow in an active state thereof, transport piping and multiple material inlet points that are provided in at least one branch of the transport piping and that communicate with the conveying system through associated discharge valves controlling an emptying operation of associated material inlet points, the system comprising:

means for remote sensing and determining of system pressure and air speed values of the conveying system during inlet point emptying operations;

means for processing pressure and air speed values from the means for sensing and determining system pressure and air speed values of the conveying system;

means for determining a valve open time for each discharge valve of the transport piping; and

discharge valve control means for outputting discharge valve activating signals in dependence upon determined valve open times.

10. The system according to claim 9 , wherein the means for determining a valve open time for each discharge valve is configured to determine the discharge valve open time in dependence of the sensed system pressure and air speed values and to determine the frequency of successive discharge valve open times based on the sensed system pressure and air speed values.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2014
From: FORESTIER, NIKLAS MATTIAS; ALFROST, MARTIN
To: ENVAC AB
Reel/Frame 034454/0395 →
Continuity (1)
Related Publication 20150321843A1 · Nov 12, 2015