JPH1163733A - Refrigerating device - Google Patents

Refrigerating device

Info

Publication number
JPH1163733A
JPH1163733A JP9230834A JP23083497A JPH1163733A JP H1163733 A JPH1163733 A JP H1163733A JP 9230834 A JP9230834 A JP 9230834A JP 23083497 A JP23083497 A JP 23083497A JP H1163733 A JPH1163733 A JP H1163733A
Authority
JP
Japan
Prior art keywords
flat plate
refrigerant flow
pressure variation
spirally
throttle
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
JP9230834A
Other languages
Japanese (ja)
Inventor
Kazuhiro Tomimasu
和宏 冨増
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mitsubishi Heavy Industries Ltd
Original Assignee
Mitsubishi Heavy Industries Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mitsubishi Heavy Industries Ltd filed Critical Mitsubishi Heavy Industries Ltd
Priority to JP9230834A priority Critical patent/JPH1163733A/en
Publication of JPH1163733A publication Critical patent/JPH1163733A/en
Withdrawn legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B2400/00General features or devices for refrigeration machines, plants or systems, combined heating and refrigeration systems or heat-pump systems, i.e. not limited to a particular subgroup of F25B
    • F25B2400/02Centrifugal separation of gas, liquid or oil

Abstract

PROBLEM TO BE SOLVED: To stir a refrigerant flow after restricted and make it uniform lower pressure variation and reduce vibration due to the pressure variation by inserting a flat plate formed in a spiral shape into a piping immediately after a restricted part. SOLUTION: A porous flat plate 7 formed by winding a plate spirally is inserted into a part immediately after a restricted part 4 in a pipe 6 for connecting the restricted part 4 to an evaporator 3. The porous flat plate 7 is formed by post-working spirally a flat plate such as a foaming metal, a sintered metal, ceramics or the like, or forming a plate spirally by using a mold. Thus, since a two-phase refrigerant flow immediately after the restricted part 4 is stirred through a spiral passage, it becomes similar to a uniform refrigerant flow. As a result, pressure variation is lowered. The length of the porous flat plate 7 is adjusted, so that an effect of lowering the pressure variation can be adjusted.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、圧縮機、凝縮器、
絞り、及び蒸発器で構成される冷凍装置に関し、特に、
その絞り後の冷媒の圧力変化によって生ずる振動を低減
した冷凍装置に関する。
TECHNICAL FIELD The present invention relates to a compressor, a condenser,
Restriction, and a refrigeration system composed of an evaporator, particularly,
The present invention relates to a refrigeration apparatus in which vibration caused by a change in pressure of the refrigerant after the throttle is reduced.

【0002】[0002]

【従来の技術】図2に本発明が適用される冷凍装置の一
般的な構成を示してある。図2において、1は圧縮機、
2は凝縮器、3は蒸発器、4は絞りを示している。この
ように構成された冷凍装置において、冷媒は矢印のよう
に流れるが、絞り4と蒸発器3の間を連絡する配管部分
で冷媒は2相冷媒流となる。
2. Description of the Related Art FIG. 2 shows a general configuration of a refrigerating apparatus to which the present invention is applied. In FIG. 2, 1 is a compressor,
Reference numeral 2 denotes a condenser, 3 denotes an evaporator, and 4 denotes a throttle. In the refrigeration apparatus configured as described above, the refrigerant flows as indicated by the arrow, but the refrigerant becomes a two-phase refrigerant flow in a pipe portion communicating between the throttle 4 and the evaporator 3.

【0003】すなわち、この配管部分では、冷媒は図3
に示すように液冷媒8とガス冷媒9に分離して流れる場
合や、大きな気泡と液相とが交互に流れる場合、或い
は、液相中に比較的大きな気泡が混じった状態で流れる
場合などが生ずる。このような2相冷媒流では、いづれ
の場合も圧力変動を伴うため、それに起因して冷媒流動
音が発生する。
That is, in this piping portion, the refrigerant
As shown in the figure, there is a case where the liquid refrigerant 8 and the gas refrigerant 9 flow separately, a case where large bubbles and a liquid phase flow alternately, a case where relatively large bubbles are mixed in the liquid phase, and the like. Occurs. In any case of such a two-phase refrigerant flow, a pressure fluctuation accompanies each case, and accordingly, a refrigerant flow noise is generated.

【0004】この冷媒流動音の発生を防ぐための提案は
既になされているが、その一例として特開昭61−65
62号公報に示されたものがある。ここで提案されてい
るのは図4に示す構成のものである。
Although proposals have been made to prevent the generation of this refrigerant flow noise, an example thereof is disclosed in Japanese Patent Application Laid-Open No. 61-65 / 1986.
No. 62 is disclosed. The one proposed here has the configuration shown in FIG.

【0005】図4において、6は絞り4と蒸発器(冷却
器)とを連絡するパイプを示しており、ここで提案され
ているのは、このパイプ6内に多孔体10を挿入し噴射
音を低減しようとするものである。
[0005] In FIG. 4, reference numeral 6 denotes a pipe connecting the throttle 4 and an evaporator (cooler). The proposal here is to insert a porous body 10 into the pipe 6 and to make an injection sound. Is to be reduced.

【0006】しかしながら、このようにパイプ6内に多
孔体10を挿入した構成では、図3に示したような状態
の2相冷媒流に対しては冷媒流動音の低減効果が半減す
る上、多孔体10にゴミが詰って所期の機能を損うとい
う欠点がある。
However, in the configuration in which the porous body 10 is inserted into the pipe 6, the effect of reducing the refrigerant flow noise is reduced by half with respect to the two-phase refrigerant flow in the state shown in FIG. There is a disadvantage that the body 10 is clogged with dust and impairs its intended function.

【0007】前記したように冷媒流動騒音の主要因は絞
り後の圧力変動であり、これが冷却器を加振することに
より騒音となる。この圧力変動を押さえるには冷却器前
の流れを均質流とすることがポイントとなる。
As described above, the main factor of the refrigerant flow noise is the pressure fluctuation after the throttling, which becomes noise by vibrating the cooler. The key point in suppressing this pressure fluctuation is to make the flow before the cooler a homogeneous flow.

【0008】ところが、前記した従来例の特開昭61−
6562号公報に記載のものでは均質流にする為には多
孔体の開口率を小さくする必要があり必然的に圧損が大
きくなる。逆に開口率を大きくすると圧損は小さくなる
が液部分、ガス部分がそのまま通り抜けることとなり均
質流とはならないという欠点もある。
However, the above-mentioned conventional example of Japanese Patent Application Laid-Open No.
In the apparatus disclosed in Japanese Patent No. 6562, it is necessary to reduce the aperture ratio of the porous body in order to make the flow uniform, and the pressure loss inevitably increases. Conversely, when the aperture ratio is increased, the pressure loss is reduced, but there is a disadvantage that the liquid portion and the gas portion pass through as they are, and the flow does not become a homogeneous flow.

【0009】[0009]

【発明が解決しようとする課題】本発明は、圧縮機、凝
縮器、絞り、および蒸発器で構成された冷凍装置におい
て、絞り後の冷媒の圧力変動に起因して発生する振動を
低減可能とした冷凍装置を提供することを課題としてい
る。
SUMMARY OF THE INVENTION According to the present invention, in a refrigeration system including a compressor, a condenser, a throttle, and an evaporator, it is possible to reduce the vibration generated due to the pressure fluctuation of the refrigerant after the throttle. It is an object of the present invention to provide a refrigerating device that has been improved.

【0010】[0010]

【課題を解決するための手段】本発明は、前記課題を解
決するため、圧縮機、凝縮器、絞り、及び蒸発器で構成
された冷凍装置において、前記絞りの直後の配管内に螺
旋状に形成した平板を挿入した構成の冷凍装置を提供す
る。
SUMMARY OF THE INVENTION According to the present invention, there is provided a refrigeration system comprising a compressor, a condenser, a throttle, and an evaporator, which is spirally inserted into a pipe immediately after the throttle. Provided is a refrigeration apparatus having a configuration in which a formed flat plate is inserted.

【0011】本発明による冷凍装置で採用する螺旋状に
形成した平板としては、多孔平板を採用するのが冷媒流
動音の低減効果を高める上で好ましい。
As the spirally formed flat plate used in the refrigerating apparatus according to the present invention, it is preferable to use a perforated flat plate in order to enhance the effect of reducing the flow noise of the refrigerant.

【0012】本発明による冷凍装置においては、絞りの
直後の配管内に螺旋状に形成した平板が挿入されている
ので、絞り後の2相冷媒流は螺旋状の平板によって形成
される螺旋状の通路を通ることでかきまわされ均質な冷
媒流となる。
In the refrigeration apparatus according to the present invention, since the spirally formed flat plate is inserted into the pipe immediately after the throttle, the two-phase refrigerant flow after the throttle is formed by the spiral spiral plate formed by the spiral flat plate. By passing through the passage, it is stirred and becomes a homogeneous refrigerant flow.

【0013】このように、螺旋状の平板により冷媒流へ
の圧損を殆んど変化させることなく騒音を低減できる。
また、ゴミの詰りによる機能低下の心配もない。
As described above, the spiral flat plate can reduce noise without substantially changing the pressure loss to the refrigerant flow.
In addition, there is no fear that the function is deteriorated due to clogging of garbage.

【0014】[0014]

【発明の実施の形態】以下、本発明による冷凍装置につ
いて図1に示した実施の形態に基づいて具体的に説明す
る。なお、以下の実施の形態において、図2以下に示し
た従来の装置と同じ構成の部分には説明を簡単にするた
め同じ符号を付してある。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, a refrigeration apparatus according to the present invention will be specifically described based on an embodiment shown in FIG. Note that, in the following embodiments, the same components as those of the conventional apparatus shown in FIG.

【0015】図1において、7は多孔平板を螺旋状に巻
いて形成したもので、絞り4と蒸発器3を結ぶパイプ6
内の絞り4の直後に挿入されている。
In FIG. 1, reference numeral 7 denotes a spirally wound perforated flat plate, and a pipe 6 connecting the throttle 4 and the evaporator 3.
It is inserted immediately after the diaphragm 4 in FIG.

【0016】多孔平板を構成するものとしては発砲金
属、焼結金属、セラミックなどが適している。勿論、平
板を螺旋状に後加工しても、型で螺旋状に成形してもよ
い。多孔平板7における孔の開口率、直径、長さは適宜
調節される。
Suitable materials for forming the perforated flat plate include foamed metal, sintered metal, ceramic and the like. Of course, the flat plate may be post-processed into a spiral shape, or may be formed into a spiral shape using a mold. The aperture ratio, diameter, and length of the holes in the porous flat plate 7 are appropriately adjusted.

【0017】図1のように構成した螺旋状に形成した平
板を挿入したパイプ6を有する冷凍装置とすることによ
って絞り4の後の2相冷媒流は螺旋状の通路を通ること
でかきまわされ均質な冷媒流に近づく。その結果、多孔
平板7による圧力変動低下作用が促進される。また、多
孔板7の長さを調整することで圧力変動低下効果を調整
できる。この際、冷媒通路圧損は殆んど変化しないし、
ゴミによるつまりも生じない。
By providing a refrigeration system having a pipe 6 into which a helically formed flat plate is inserted as shown in FIG. 1, the two-phase refrigerant flow after the throttle 4 passes through a helical passage to be stirred. And approach a homogeneous refrigerant flow. As a result, the pressure fluctuation reducing effect of the porous flat plate 7 is promoted. Further, by adjusting the length of the perforated plate 7, the effect of reducing the pressure fluctuation can be adjusted. At this time, the refrigerant passage pressure loss hardly changes,
No clogging due to garbage.

【0018】以上、本発明を図示した実施形態に基づい
て具体的に説明したが、本発明がこれらの実施形態に限
定されず特許請求の範囲に示す本発明の範囲内で、その
具体的構造、構成に種々の変更を加えてよいことはいう
までもない。
As described above, the present invention has been specifically described based on the illustrated embodiments. However, the present invention is not limited to these embodiments, and the specific structure thereof is within the scope of the present invention shown in the claims. Needless to say, various changes may be made to the configuration.

【0019】例えば、上記実施形態では、多孔板によっ
て螺旋状に形成した平板を採用しているが、多孔板であ
ることは必ずしも不可欠ではなく、単なる平板であって
もよい。
For example, in the above-described embodiment, a flat plate spirally formed by a perforated plate is employed. However, the perforated plate is not necessarily indispensable, and may be a simple flat plate.

【0020】[0020]

【発明の効果】以上説明したように、本発明は、圧縮
機、凝縮器、絞り、及び蒸発器で構成された冷凍装置に
おいて、前記絞りの直後の配管内に螺旋状に形成した平
板を挿入した構成の冷凍装置を提供するものである。
As described above, according to the present invention, in a refrigeration system including a compressor, a condenser, a throttle, and an evaporator, a spirally formed flat plate is inserted into a pipe immediately after the throttle. It is intended to provide a refrigeration apparatus having a configuration as described above.

【0021】この螺旋状の平板により絞りを出て2相流
となって流れる冷媒はかきまわされて均質な冷媒流とな
り圧力変動を低下させる。また、この螺旋状の平板を多
孔板で構成すると、多孔板による消音作用で、特に高周
波の圧力変動成分を低下させることができる。
The refrigerant flowing out of the restrictor and flowing as a two-phase flow by the spiral flat plate is stirred and becomes a homogeneous refrigerant flow, thereby reducing pressure fluctuation. Further, when the spiral flat plate is formed of a perforated plate, the high-frequency pressure fluctuation component can be particularly reduced by the sound deadening effect of the perforated plate.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の実施の一形態による冷凍装置における
絞りと蒸発器をつなぐパイプの構成を示す断面図。
FIG. 1 is a cross-sectional view showing a configuration of a pipe connecting a throttle and an evaporator in a refrigeration apparatus according to one embodiment of the present invention.

【図2】本発明を適用する冷凍装置の一般的な構成を示
す説明図。
FIG. 2 is an explanatory diagram showing a general configuration of a refrigeration apparatus to which the present invention is applied.

【図3】図2に示した冷凍装置における絞りの後のパイ
プ内の冷媒流の状態を示す説明図。
FIG. 3 is an explanatory diagram showing a state of a refrigerant flow in a pipe after a throttle in the refrigeration apparatus shown in FIG. 2;

【図4】従来の冷凍装置における絞り後のパイプ内の構
成を示す断面図。
FIG. 4 is a cross-sectional view showing a configuration inside a pipe after drawing in a conventional refrigeration system.

【符号の説明】[Explanation of symbols]

1 圧縮機 2 凝縮器 3 蒸発器 4 絞り 6 パイプ 7 多孔平板 8 液冷媒 9 ガス冷媒 10 多孔体 DESCRIPTION OF SYMBOLS 1 Compressor 2 Condenser 3 Evaporator 4 Restrictor 6 Pipe 7 Perforated plate 8 Liquid refrigerant 9 Gas refrigerant 10 Porous body

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 圧縮機、凝縮器、絞り、及び蒸発器で構
成された冷凍装置において、前記絞りの直後の配管内に
螺旋状に形成した平板を挿入したことを特徴とする冷凍
装置。
1. A refrigeration apparatus comprising a compressor, a condenser, a throttle, and an evaporator, wherein a helical flat plate is inserted into a pipe immediately after the throttle.
【請求項2】 前記平板を多孔板とした請求項1記載の
冷凍装置。
2. The refrigerating apparatus according to claim 1, wherein the flat plate is a perforated plate.
JP9230834A 1997-08-27 1997-08-27 Refrigerating device Withdrawn JPH1163733A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP9230834A JPH1163733A (en) 1997-08-27 1997-08-27 Refrigerating device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP9230834A JPH1163733A (en) 1997-08-27 1997-08-27 Refrigerating device

Publications (1)

Publication Number Publication Date
JPH1163733A true JPH1163733A (en) 1999-03-05

Family

ID=16914014

Family Applications (1)

Application Number Title Priority Date Filing Date
JP9230834A Withdrawn JPH1163733A (en) 1997-08-27 1997-08-27 Refrigerating device

Country Status (1)

Country Link
JP (1) JPH1163733A (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001050616A (en) * 1999-08-06 2001-02-23 Mitsubishi Electric Corp Refrigeration cycle device and air conditioner
JP2004069166A (en) * 2002-08-06 2004-03-04 Daikin Ind Ltd Rectifying device for two-phase refrigerant flow and freezer
US20160265823A1 (en) * 2015-03-13 2016-09-15 Denso International America, Inc. Noise Reduction Insert for an Evaporator
KR101718421B1 (en) * 2016-04-29 2017-03-24 한국화학연구원 Heating and Cooling Apparatus using Gas Refrigerant and Ionic Liquids
CN110249189A (en) * 2017-02-07 2019-09-17 株式会社电装 Refrigerant piping and refrigerating circulatory device

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001050616A (en) * 1999-08-06 2001-02-23 Mitsubishi Electric Corp Refrigeration cycle device and air conditioner
JP2004069166A (en) * 2002-08-06 2004-03-04 Daikin Ind Ltd Rectifying device for two-phase refrigerant flow and freezer
US20160265823A1 (en) * 2015-03-13 2016-09-15 Denso International America, Inc. Noise Reduction Insert for an Evaporator
US10060659B2 (en) * 2015-03-13 2018-08-28 Denso International America, Inc. Noise reduction insert for an evaporator
KR101718421B1 (en) * 2016-04-29 2017-03-24 한국화학연구원 Heating and Cooling Apparatus using Gas Refrigerant and Ionic Liquids
CN110249189A (en) * 2017-02-07 2019-09-17 株式会社电装 Refrigerant piping and refrigerating circulatory device

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