Claims
- 1. A method of reblending aggregate comprising:
delivering aggregate of various sizes to a classification tank for reblending, the classification tank having an inlet and a plurality of stations Si arranged at progressively greater distances from the inlet for collecting the aggregate through settling, where i equals 1 through the number of stations N in the plurality of stations, Sl being closest to the inlet and SN being farthest from the inlet, each station having a plurality of discharge valves therein, the plurality of discharge valves including a primary discharge valve and a secondary discharge valve; calibrating the tank to determine raw feed analysis, discharge rates in terms of total valve open time at each station over the total valve open times at all of the stations, and a set of flow multipliers so as to develop a mathematical model of the tank based upon the aggregate being delivered to the tank; inputting into a computer for controlling the tank a specification for a desired primary product including the quantity of the desired primary product and the desired distribution of the various aggregate sizes in the desired primary product; operating the tank in a production mode and collectively controlling the discharge valves on a percentage basis at a given station by periodically comparing the total valve open time at a given station to the total valve open time for all of the stations, and controlling a valve percent setting which for the primary discharge valve setting is defined as a ratio of the primary discharge valve open time over the total valve open time for a given station and which for the secondary discharge valve is defined as a ratio of the secondary discharge valve open time over the total valve open time for a given station; then adjusting the valve discharge rate and valve percent setting at one or more stations to divert material away from the primary discharge valve as necessary to bring the projected primary product into the product specification for the primary product.
- 2. The method of claim 1 wherein the adjusting step includes setting i=N and the substeps of:
a) computing a primary projected final product being discharged from the tank; b) comparing the projected final product to the product specification for the primary product;
if the projected final product exceeds the primary product specification for fine aggregate; c) then adjusting the primary discharge valve in station Si by reducing the percentage of primary valve open time by a given amount; d) then repeating steps a-c as necessary until the projected primary product is in specification or the primary discharge valve of station Si is completely closed; e) if the primary valve of station Si is completely closed and the primary product is still out of specification, then decrease i by one and repeat steps a-d until the projected primary product is in specification or the primary discharge valve at each station has been completely closed.
- 3. The method of claim 2 wherein a secondary product is to be formed according to a secondary product specification once the projected primary product is in specification, the secondary product being formed by steps comprising:
inputting into the computer a production specification for a desired secondary product including the quantity of the desired secondary product and the desired distribution of the various aggregate sizes in the desired secondary product; then adjusting the valve discharge rate and valve percent setting at one or more stations to divert material away from the secondary discharge valve as necessary to bring the projected secondary product into the product specification for the secondary product, the adjusting step including setting i=N and substeps comprising:
f) computing a secondary projected final product being discharged from the tank; g) comparing the secondary projected final product to the product specification for the secondary product; if the projected final product exceeds the secondary product specification for fine aggregate;
h) then adjusting the secondary discharge valve in station Si by reducing the percentage of secondary valve open time by a given amount; i) then repeating steps f-h as necessary until the projected secondary product is in specification or the secondary discharge valve of station Si is completely closed; j) if the secondary valve of station Si is completely closed and the secondary product is still out of specification, decrease i by one and repeat steps f-i until the projected secondary product is in specification or the secondary discharge valve at each station has been completely closed.
CROSS-REFERENCE TO A RELATED APPLICATION
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 09/266,037 filed Mar. 11, 1999, which claims priority based upon U.S. Provisional Application No. 60/104,665 filed Oct. 16, 1998.
Provisional Applications (1)
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Number |
Date |
Country |
|
60104665 |
Oct 1998 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09266037 |
Mar 1999 |
US |
Child |
09817679 |
Mar 2001 |
US |