The present invention relates to a procedure for converting low-grade thermal energy into mechanical energy in a turbine for further utilization and plant for implementing the procedure.
The purpose of the invention is to achieve a process and a plant for converting low-grade heat, e.g. in the form of cooling water or waste heating water from a process of any kind or hot water occurring in nature, into mechanical energy in a turbine for further utilization, whereby a heat exchanger is common in the invention's two-stage procedure steam turbine circuit--heat pump circuit--condenser in the steam turbine circuit and evaporator in the heat pump circuit.
The procedure and the plant according to the invention are characterized by what is evident from the appended claims.
The invention will now be described in greater detail with reference to appended drawings in which
FIG. 1 shows a diagram of the plant according to the invention with total outgoing cooled medium flow and
FIG. 2 shows a diagram of the same plant but with partial outgoing cooled medium flow.
FIG. 1 refers to a plant where low-grade heating medium 1, e.g. in the form of cooling water or waste heating water from a process of any kind, is carried to a heating device A where it evaporates a first cooling medium of suitable type. Heating device A consists of a heat exchanger functioning as a steam generator but which also functions as a cooler of the low-grade heating medium. The evaporated cooling medium is carried by pipe 1 to a turbine for energy conversion, i.e. the thermal energy of the steam is converted partially into another energy state via a generator, for example. From turbine T the moist steam is now carried in pipe 2 to a first cooling device B for condensing. The first cooling device B for condensing. The first cooling device B consists of a heat exchanger equipped with an evaporator but also serves as a condenser in the process. The condensate formed during cooling is pumped via a feed pump MP through pipe 3 back to heat exchanger A and the process, i.e. a work cycles, has been completed. The feed pump is driven either directly by a turbine or by an electric motor. The heat removed during condensing is absorbed by a second evaporating cooling medium of suitable type in heat exchanger B. The evaporated cooling medium is pumped via a heat pump VP, installed in order to obtain a higher condensing temperature, through pipe 4, i.e. a heat pump circuit. The heat pump is driven either directly by a turbine or by an electric motor. Condensing subsequently takes place in a second cooling device C. The second cooling device C consists of a heat exchanger functioning as a condenser. Heat exchanger C is cooled by outgoing cooled medium 6 from heat exchanger A. The condensate formed during cooling is carried via an expansion valve Ex through pipe 5 back for further utilization in heat exchanger B. The hot gas of heat pump VP can be utilized for extra superheating of the ingoing first evaporated cooling medium supplied to turbine T and circulates back and forth in the process through pipes 8 and 9. The outgoing cooled medium 6 from heat exchanger A is heated in heat exchanger C in its entirety to a level that is lower than the original temperature level at the commencement of the process. From heat exchanger C the heating medium 11, e.g. cooling water or waste heating water, then goes back to the used process.
FIG. 2 refers to a similar plant but of somewhat different design. The steam turbine cycle is the same but the heat pump circuit is not. Only part of the flow of outgoing cooled medium 6 from heat exchanger A is reheated but to a level that is the same as or higher than the original temperature level at the commencement of the process and then returned via a pump P through pipe 7 to heat exchanger A. Through the combination of steam turbine and heat pump circuit, a sufficiently low condensing temperature is achieved to enable the steam turbine circuit to function.
The invention is of course not limited to these versions but can naturally be varied within the framework of the concept of the invention.