Fluid Machine
20210310479 · 2021-10-07
Inventors
Cpc classification
F04B2205/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B49/103
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2270/78
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2240/403
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B49/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B2203/0204
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/0215
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B2205/05
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B2203/0201
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C28/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B35/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B2201/0801
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B2207/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C2270/19
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B2203/0202
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B49/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
Even when abnormal heat generation occurs during operation in a state where the temperature of a compressor is not increased, abnormality cannot be detected. A fluid machine includes a fluid machine body; a motor that drives the fluid machine body; a temperature sensor that measures a temperature of the fluid machine body; and a control unit that controls the fluid machine body. The control unit changes a temperature threshold value based on at least one of a pressure of a fluid discharged by the fluid machine body and a frequency of a voltage input into the motor, and issues a notification when the temperature of the compressor body measured by the temperature sensor exceeds the temperature threshold value.
Claims
1.-15. (canceled)
16. A fluid machine comprising: a fluid machine body; a motor that drives the fluid machine body; a temperature sensor that measures a temperature of the fluid machine body; and a control unit that controls the fluid machine body, wherein the control unit changes a temperature threshold value based on a pressure of a fluid discharged by the fluid machine body, and issues a notification when the temperature measured by the temperature sensor exceeds the temperature threshold value.
17. The fluid machine according to claim 16, wherein when the control unit changes the temperature threshold value based on the pressure of the fluid discharged by the fluid machine body, the temperature threshold value when the pressure of the fluid is high is larger than or equal to the temperature threshold value when the pressure of the fluid is low.
18. A fluid machine comprising: a fluid machine body; a motor that drives the fluid machine body; a temperature sensor that measures a temperature of the fluid machine body; and a control unit that controls the fluid machine body, wherein the control unit changes a temperature threshold value based on a frequency into the motor, and issues a notification when the temperature measured by the temperature sensor exceeds the temperature threshold value; and wherein the temperature threshold value when the frequency input into the motor is high is less than or equal to the temperature threshold value when the frequency input into the motor is low.
19. The fluid machine according to claim 16, wherein the control unit does not issue a notification when the temperature measured by the temperature sensor exceeds the temperature threshold value for a predetermined time from start of operation of the fluid machine body.
20. The fluid machine according to claim 16, wherein the temperature of the fluid machine body measured by the temperature sensor is a temperature of a heat radiation fin that radiates heat generated in an operation chamber of the fluid machine body.
21. The fluid machine according to claim 16, wherein the temperature of the fluid machine body measured by the temperature sensor is a temperature of a heat radiation fin that radiates heat generated in an operation chamber of the fluid machine.
22. The fluid machine according to claim 16, wherein when the control unit changes the temperature threshold value from a first temperature threshold value to a second temperature threshold value lower than the first temperature threshold value, the control unit changes the temperature threshold value to a third temperature threshold value that is a temperature between the first temperature threshold value and the second temperature threshold value, and then changes the temperature threshold value to the second temperature threshold value.
23. A fluid machine comprising: a fluid machine body; a motor that drives the fluid machine body; an ammeter that measures a current input into the motor; and a control unit that controls the fluid machine body, wherein the control unit changes a current threshold value based on a pressure of a fluid discharged by the fluid machine body, and issues a notification when the current measured by the ammeter exceeds the current threshold value; and wherein the current threshold value when the pressure of the fluid is high is larger than or equal to the current threshold value when the pressure of the fluid is low.
24. The fluid machine according to claim 23, wherein when the control unit changes the current threshold value based on the frequency of the voltage input into the motor, the current threshold value when the frequency of the voltage is high is less than or equal to the current threshold value when the frequency of the voltage is low.
25. The fluid machine according to claim 23, wherein the control unit does not issue a notification when the current measured by the ammeter exceeds the current threshold value for a predetermined time from start of operation of the fluid machine body.
26. A fluid machine comprising: a fluid machine body; a motor that drives the fluid machine body; an ammeter that measures a current input into the motor; and a control unit that controls the fluid machine body, wherein the control unit changes a power threshold value based on at least one of a pressure of a fluid discharged by the fluid machine body and a frequency of a voltage input into the motor, and issues a notification when a power obtained from the current measured by the ammeter exceeds the power threshold value.
27. The fluid machine according to claim 26, wherein when the control unit changes the power threshold value based on the pressure of the fluid discharged by the fluid machine body, the power threshold value when the pressure of the fluid is high is larger than or equal to the power threshold value when the pressure of the fluid is low.
28. The fluid machine according to claim 26, wherein when the control unit changes the power threshold value based on the frequency of the voltage input into the motor, the power threshold value when the frequency of the voltage is high is less than or equal to the power threshold value when the frequency of the voltage is low.
29. The fluid machine according to claim 26, wherein the control unit does not issue a notification when the power obtained from the current measured by the ammeter exceeds the power threshold value for a predetermined time from start of operation of the fluid machine body.
30. The fluid machine according to claim 18, wherein the control unit does not issue a notification when the temperature measured by the temperature sensor exceeds the temperature threshold value for a predetermined time from start of operation of the fluid machine body.
31. The fluid machine according to claim 18, wherein the temperature of the fluid machine body measured by the temperature sensor is a temperature of a heat radiation fin that radiates heat generated in an operation chamber of the fluid machine body.
32. The fluid machine according to claim 18, wherein the temperature of the fluid machine body measured by the temperature sensor is a temperature of a heat radiation fin that radiates heat generated in an operation chamber of the fluid machine.
33. The fluid machine according to claim 18, wherein when the control unit changes the temperature threshold value from a first temperature threshold value to a second temperature threshold value lower than the first temperature threshold value, the control unit changes the temperature threshold value to a third temperature threshold value that is a temperature between the first temperature threshold value and the second temperature threshold value, and then changes the temperature threshold value to the second temperature threshold value.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008]
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[0020]
[0021]
[0022]
[0023]
MODE FOR CARRYING OUT THE INVENTION
First Embodiment
[0024] In the present embodiment, as a compression method of a compressor body, a scroll compressor in which a compression chamber is formed between a fixed scroll and an orbiting scroll and which takes orbiting motion to compress air will be described as an example.
[0025]
[0026] Temperature information measured by the temperature sensor 108 or a temperature sensor 109 provided in the compressor body, or information such as a current value measured by an ammeter provided in the inverter 107 is input to a control unit 110. The frequency of voltage output from the inverter 107 is controlled by the control unit.
[0027]
[0028] As shown in
[0029] In addition, the relationship between the pressure P and the temperature T is as shown in
[0030] A method for determining a threshold value T(f) corresponding to the frequency f is represented by equation (1) where the threshold value is a value obtained by adding a constant value to a normal temperature To(f), equation (2) where the threshold value is expressed as a function of the frequency f using arbitrary coefficients k and β, or the like, and more generally, may be represented by equation (3).
T(f)=To(f)+α (1)
T(f)=−kf+β (2)
T(f+Δf)≥T(f)(Δf>0) (3)
[0031] A method for determining a threshold value T(P) corresponding to the pressure P is represented by equation (4) where the threshold value is a value obtained by adding a constant value to a normal temperature To(P), equation (5) where the threshold value is expressed as a function of the pressure P using arbitrary coefficients m and β, or the like, and more generally, may be represented by equation (6).
T(P)=To(P)+α (4)
T(P)=mP+β (5)
T(P+ΔP)≤T(P)(ΔP>0) (6)
[0032] In
[0033] In
[0034]
[0035]
[0036] In this control, when the threshold value is increased as at time t1, since the threshold value is a threshold value of 45 K at time t1 as indicated by a threshold value increase 606, the threshold value is immediately increased to 45 K. On the other hand, when the threshold value is decreased as at time t2, control is performed such that as indicated by threshold value decrease 607, the threshold value is not immediately decreased to a threshold value of 50 K at time t2, but the threshold value is decreased over time in a stepwise manner, linearly, or non-linearly. The reason is that since it takes time for the temperature of the compressor to decrease, when the threshold value is immediately decreased, there is a possibility of detecting abnormality of the compressor even though there is no abnormality.
[0037]
[0038] Since the threshold value is not set to a fixed value and is changed according to the pressure and the frequency as described above, the accuracy of detecting a temperature rise caused by wear of the compressor is further improved, and maintenance can be performed before damage occurs due to the wear of the compressor.
[0039] In
[0040] Incidentally, in the present embodiment, the inverter machine has been described as a target; however, a compressor which is subjected to constant speed control without using the inverter may be used, and in that case, only the threshold value is changed for a change in pressure, so that similarly, a determination can be performed with high detection accuracy.
[0041] In addition, in the present embodiment, an example where the threshold value is changed according to the pressure and the frequency has been described; however, the threshold value can be changed according to only the pressure or only the frequency.
Second Embodiment
[0042]
T′(P)=To′(P)+α (7)
T′(P)=mP+β (8)
T′(P+ΔP)≥T′(P)(ΔP>0) (9)
[0043] In
[0044]
Third Embodiment
[0045]
[0046] A method for determining a threshold value I(P) of 1102 corresponding to the pressure P is represented by equation (10) where the threshold value is a value obtained by adding a constant value to a normal current value Io(P) of 1101, equation (11) where the threshold value is expressed as a function of the pressure P using the arbitrary coefficients m and β, or the like, and more generally, may be represented by equation (12).
I(P)=Io(P)+α (10)
I(P)=mP+β (11)
I(P+ΔP)≥I(P)(ΔP>0) (12)
[0047] In
[0048]
Fourth Embodiment
[0049]
W(P)=Wo(P)+α (13)
W(P)=mP+β (14)
W(P+ΔP)=W(P)(ΔP>0) (15)
[0050] In
[0051]
[0052] Incidentally, equations (3), (6), (9), (12), and (15) use an equation such as a quadratic function and an exponential function according to a distribution of the normal temperature, current, or power, or a value that matches the tendency of equations (3), (6), (9), (12), and (15) stored in a storage unit can be also used.
[0053] Incidentally, in the present invention, a scroll compressor has been described as an example; however, the present invention is not limited to the scroll machine, and can be adopted in a fluid machine such as a twin or single screw type, a reciprocating type, or a turbo type as long as the fluid machine includes a temperature sensor that measures the temperature of a fluid machine body or a discharge fluid, and a sensor that measures a current or a power input into a motor. In addition, the present invention can be also adopted in compressors such as a compressor that compresses a mixed gas such as air and a compressor that compresses a single gas such as nitrogen gas or oxygen gas. Further, the present invention can be adopted in a fluid machine such as a chiller or a pump including the same mechanism other than the compressor.
[0054] In addition, the present invention is not limited to the above embodiments, and includes various modification examples. For example, the above embodiments have been described in detail to describe the present invention in an easy-to-understand manner, and the present invention is not necessarily limited to including all the configurations described. In addition, a part of the configuration of an embodiment can be replaced with the configuration of another embodiment, and the configuration of another embodiment can be added to the configuration of an embodiment. In addition, other configurations can also be added to, removed from, or replaced with a part of the configuration of each of the embodiments. It is needless to say that even when the temperature of the discharge fluid in the second embodiment, an input current to the motor in the third embodiment, or the power consumption of the motor in the fourth embodiment is used, similar to the first embodiment, control is performed such that a notification is not issued when the threshold value is exceeded during start of the fluid machine as described with reference to
REFERENCE SIGNS LIST
[0055] 103 Shaft [0056] 104 Orbiting scroll [0057] 105 Fixed scroll [0058] 106 Cooling fan [0059] 107 Inverter [0060] 108 Temperature sensor [0061] 109 Temperature sensor