IP Library Granted Patent US 9,695,777
Granted Patent B2
US 9,695,777 · App. 14/650,374 · Granted Jul 4, 2017

Series parallel waste heat recovery system

Inventor: John Gibble (Chambersburg, PA)
Assignee: MACK TRUCKS, INC.
F02G5/02F28D21/0003F28F27/00F01N5/02
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Quick Facts
Patent No.
US 9,695,777
App. No.
14/650,374
Granted
Jul 4, 2017
Kind
B2
Abstract

The present invention relates to a waste heat recovery system including a first heating line, a second heating line, and a valve section. The first heating line in a working fluid circuit includes a first heat exchanger operatively connected to transfer heat energy to a working fluid. The second heating line in the working fluid circuit includes a second heat exchanger operatively connected to transfer heat to the working fluid. The valve section is selectively controllable to provide a first configuration in which the first heat exchanger and second heat exchangers are operatively connected to the working fluid circuit in parallel and a second configuration in which the first heat exchanger and second heat exchanger are operatively connected to the working fluid circuit in series.

Claims (25)

1. A waste heat recovery system, comprising;

a first heating line in a working fluid circuit including a first heat exchanger operatively connected to transfer heat energy to a working fluid;

a second heating line in the working fluid circuit including a second heat exchanger operatively connected to transfer heat to the working fluid;

a valve section in the working fluid circuit operatively connected to the first heating line and second heating line and selectively controllable to provide a first configuration in which the first heat exchanger and second heat exchanger are operatively connected to the working fluid circuit in parallel and a second configuration in which the first heat exchanger and second heat exchanger are operatively connected to the working fluid circuit in series;

at least one temperature sensor operatively connected to monitor the temperature of at least one of the working fluid and an exhaust gas flow and generate an output signal representative of the temperature of at least one of the working fluid and the exhaust gas flow; and

one or more electronics operatively connected to receive the output signal from the at least one temperature sensor and responsive thereto control the configuration of the valve section.

2. The waste heat recovery system according to claim 1 , wherein the valve section is operatively connected the first heating line and second heating line and selectively controllable to provide a third configuration in which the first and second heat exchangers are operatively connected to the working fluid in parallel and in series.

3. A waste heat recovery system, comprising:

a pump in a working fluid circuit operatively connected to pump working fluid in the working fluid circuit;

an expander in the working fluid circuit operatively connected to receive working fluid;

a condenser in the working fluid circuit operatively connected to receive the working fluid from the expander;

a first heating line in the working fluid circuit including a first heat exchanger operatively connected to transfer heat energy to a working fluid;

a second heating line in the working fluid circuit including a second heat exchanger operatively connected to transfer heat to the working fluid;

a valve section in the working fluid circuit operatively connected to the first heating line and second heating line and selectively controllable to provide a first configuration in which the first heat exchanger and second heat exchanger are operatively connected to the working fluid circuit in parallel and a second configuration in which the first heat exchanger and second heat exchanger are operatively connected to the working fluid circuit in series;

at least one temperature sensor operatively connected to monitor the temperature of at least one of the working fluid and an exhaust gas flow and generate an output signal representative of the temperature of at least one of the working fluid and the exhaust gas flow; and

one or more electronics operatively connected to receive the output signal from the at least one temperature sensor and responsive thereto control the configuration of the valve section.

4. The waste heat recovery system according to claim 3 , wherein the valve section is operatively connected the first heating line and second heating line and selectively controllable to provide a third configuration in which the first and second heat exchangers are operatively connected to the working fluid in parallel and in series.

5. The waste heat recovery system according to claim 3 , wherein the at least one temperature sensor monitors the temperature of the working fluid is located upstream from the first and second heat exchangers and downstream from the expander.

6. The waste heat recovery system according to claim 3 , wherein the at least one temperature sensor monitors the temperature of the working fluid is located downstream from the expander and upstream from the condenser.

7. The waste heat recovery system according to claim 3 , wherein the at least one temperature sensor monitors the temperature of at least one of the heat source and the working fluid in the first and second heat exchangers.

8. A method for recovering waste heat in a waste heat recovery system provided with a working fluid circuit, a pump for pumping working fluid in the working fluid circuit, an expander for receiving the working fluid, a condenser for receiving the working fluid from the expander a first heating line in a working fluid circuit including a first heat exchanger operatively connected to transfer heat energy to a working fluid, and a second heating line in the working fluid circuit including a second heat exchanger operatively connected to transfer heat to the working fluid, the method comprising the steps of

selectively controlling a valve section connected to the working fluid circuit, the first heating line, and the second heating line to provide the valve section with a first configuration in which the first heat exchanger and second heat exchanger are connected to the working fluid circuit in parallel and a second configuration in which the first heat exchanger and second heat exchanger are connected to the working fluid circuit in series;

using at least one temperature sensor to monitor the temperature of at least one of the working fluid and an exhaust gas flow and generate an output signal representative of the temperature of at least one of the working fluid and the exhaust gas flow; and

using one or more electronics to receive the output signal from the at least one temperature sensor and control the configuration of the valve section in response thereto.

9. The method for recovering waste heat in a waste heat recovery system according to claim 8 , wherein the step of selectively controlling the valve section connected to the working fluid circuit, the first heating line, and the second heating line to provide the valve section with the first configuration in which the first heat exchanger and second heat exchanger are connected to the working fluid circuit in parallel and the second configuration in which the first heat exchanger and second heat exchanger are connected to the working fluid circuit in series, further includes selectively controlling the valve section to provide the valve section with a third configuration in which the first heat exchanger and second heat exchanger are connected to the working fluid circuit in series and in parallel.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Mar 15, 2017
From: MACK TRUCKS, INC.
To: AB VOLVO (PUBL.)
Reel/Frame 042014/0022 →
NUNC PRO TUNC ASSIGNMENT Recorded Mar 15, 2017
From: AB VOLVO (PUBL.)
To: VOLVO LASTVAGNAR AB
Reel/Frame 042015/0858 →
Continuity (1)
Related Publication 20150308372A1 · Oct 29, 2015