TWI278594B - Constant temperature control method for refrigeration compartment - Google Patents

Constant temperature control method for refrigeration compartment Download PDF

Info

Publication number
TWI278594B
TWI278594B TW94146161A TW94146161A TWI278594B TW I278594 B TWI278594 B TW I278594B TW 94146161 A TW94146161 A TW 94146161A TW 94146161 A TW94146161 A TW 94146161A TW I278594 B TWI278594 B TW I278594B
Authority
TW
Taiwan
Prior art keywords
temperature
refrigerating compartment
constant temperature
change
temperature control
Prior art date
Application number
TW94146161A
Other languages
Chinese (zh)
Other versions
TW200724833A (en
Inventor
De-Yung Liou
Original Assignee
Ind Tech Res Inst
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 Ind Tech Res Inst filed Critical Ind Tech Res Inst
Priority to TW94146161A priority Critical patent/TWI278594B/en
Application granted granted Critical
Publication of TWI278594B publication Critical patent/TWI278594B/en
Publication of TW200724833A publication Critical patent/TW200724833A/en

Links

Landscapes

  • Devices That Are Associated With Refrigeration Equipment (AREA)

Abstract

A constant temperature control method for a refrigeration compartment is presented. A database of refrigeration compartment performance is established. And a temperature variation and a delay time thereof when the refrigeration room is influenced can be further calculated according to the variation of the surrounding environment to accurately calibrate the temperature of the refrigeration compartment to achieve the constant temperature control of the refrigeration room under a changeable environment.

Description

^594 九、發明說明: 【發明所屬之技術領域】 ,明係有^卜種恆溫控制的方法’應用於冷藏室, 寸,疋-種位糾哀境溫度fe:化下之冷藏室怪溫控制的方法。 【先前技術】 冷^冷齡統的基本顧,係_麵機、蒸發器、々 &始%關等設備,以管線相互連接,並湘 了 閱,而成為低溫狀態,而於通過蒸發器日膨脹 最後再回到壓縮機内進行壓縮構成―個冷滚循^。供出去, 請參閱「第1圖」,係為一般冰箱 二 據出來相當穩定可以維持恆溫 o-1 c,故貫驗數 溫度不可能維持在幾乎怪溫的狀匕以以 /第2圖」,當觸溫請參閱 ,設定之働度,使冷藏溫“至冰點=成以 以蔬果來說更為^的-取日佳為3°c、_,且其中 果滚傷,對於最重視美觀偏離太大,往往會使得蔬 -些批發商、賣場等滯鎖瓜°兄,大大減少其賣相,造成 其成本浦。 或以人咐的_,相胸 1278594 【發明内容】 ,解決上述問題,本發明提出一種冷藏室恆溫控制的方 :係可於周圍環境溫度變化下之,達到冷藏室恆溫控制的方 冷藏之冷藏室㈣控儀絲,係先量測 變_境之溫度變化,並且根據溫錢研算其所會影^594 IX, invention description: [Technical field of invention], Ming system has a method of constant temperature control 'applied to the refrigerating room, inch, 疋-type position to correct the temperature of the environment: the cold room temperature The method of control. [Prior Art] The basic considerations of the cold and cold age system are the equipments such as the surface machine, the evaporator, the 々 & the initial % off, which are connected to each other by pipelines, and are read in a low temperature state, and pass through the evaporator. The daily expansion is finally returned to the compressor for compression to form a cold rolling cycle. For the supply, please refer to "Figure 1". It is because the general refrigerator is quite stable and can maintain the constant temperature o-1 c. Therefore, it is impossible to maintain the temperature at almost the strange temperature to the second picture. When you touch the temperature, please refer to the setting of the temperature, so that the refrigerating temperature is "to the freezing point = it is more suitable for fruits and vegetables - the best is 3 °c, _, and the fruit is rolled, for the most attention to beauty The deviation is too large, and it will often cause vegetables, some wholesalers, stores, etc., to greatly reduce their selling, resulting in their cost. Or people's _, Xiang chest 1278954 [invention content], to solve the above problems The invention provides a method for constant temperature control of a refrigerating room: a refrigerating chamber (4) of a refrigerating chamber which can be controlled by a temperature change of the surrounding environment, and is a temperature change of the first measurement variable, and According to Wen Qian’s research

溫度反應值,並等待因熱傳速率所造成此—溫度變 ,然後加以根據溫度反應值校正冷藏室之溫产, 而可隨時調整冷齡的溫度。 ^皿度 「:有關本發明之詳細内容及技術,兹就配合圖式說明如 【實施方式】 周圍心明所揭露之冷藏錄溫控制的方法,主要針對 周闾%〇兄溫度變化所引起冷藏 土女 的怪溫控制方法,故,首先清‘二=柄,而加以提出 溫度會變化時,冷藏室職k 13 γ 3外界環境 所示,會偏離標φ溫度有皮動,如「第3圖」 此-溫度改變,冷藏室也會隨著又產二^中=示①),隨著 不②),且因為冷藏室多半具皿如圖令所繪 熱效果、熱傳速率’而會隔熱壁,故隨著其隔 繪示⑼,,奐句話說,外界環境^改=間延遲(如圖中所 ⑦後,使冷藏室改變溫度②。’ 里又变①,將會於時間延遲 故’根據此一原則下,本… 請參閱「第4圖」,首先量測、^μ =職至恆溫控制的方法, 姻),並根據此-溫度改變,表圍環境的溫度(步驟 H令職室所對相對應的溫度 6 1278594 反應值(變化量)(步驟術),並梦姓 403),如果延遲時間還沒有到 叫間到達(步驟 溫度有反相變化(反效果),^果溫/㈣反倒會使冷藏室的 就將冷藏室溫度調高,反而會使這=:尚未降低前 高;相反的,如果環境溫度提高,卻在尚^^藏室的溫度過 何種狀況,對於冷藏室中的物品都會有不低;不論是 等待延遲時間到達後,方進行冷严 ^衫音。故,需要 另-方面,如果在延遲時間尚未到達^外^^步=404)。 變化^得同樣相對應而調整,且對於分換^兄,5產生 可以先行建立冷藏室性能資料庫來加速推算H父正數據, 在此,舉一實施例加以說明,請參 恆^制(步驟5()1),首先冷藏室性$ 5圖」;^藏室 曲線與冷藏室溫度變化曲線,就====境 環境溫度變化曲線:21. 64+6. 60*sin(^it) 冷藏室溫度變化曲線·· 2· 24+1· 39*34(0^·^ 其中6^近似於⑺2且概略為24小時,而t 、士 為2. 5小時。如「第5圖」所示,當量測周圍間’ 度時(㈣502),帶入環境溫度變化曲線^导^^ 20 0. 248,sln(〇2t)應當也是—〇.248,故求算出冷藏^為-值為1. 9,也就是在延遲時間2. 5小時後,冷藏室; 1. 9度的改變(步驟5Q3) ’若要維持恒溫3度來說^ 溫度需往上修正1.1度(步驟504),判斷時間延 ,否達到(步驟5G5),如果沒有,則時間計時 童$ 507)後,再回到步驟502重複執行,如果已經到了, 1278594 室設定溫度調高1 曲線圖如「第6圖 度(步驟506)。運用本發明控制後,其 所示,即可使冷藏室it到恆溫的控制 ,然本發㈣前述之較佳實酬揭 ,定本發明’任何熟習此技藝者,在不脫丄以用 1内,當可作麵之更動觸飾,因此本發明口 視後附之申請專利範圍所界定者為準。X 耗圍畐 1278594 【圖式簡單說明】 ^ 2^^^#準冰侧試及性能曲線圖。 曲線圖。知變動環境溫度下冰箱之溫度剛試及性能 分析^。3圖麵_靖境溫度下冰狀溫度觀及性能曲線 意圖乐4圖係為本發明冷藏·溫控制的方法之步驟流程示 的步物物㈣冷藏室,_制的方法之實施例 溫度本瓣_溫控_碰之冰箱The temperature reaction value, and waiting for the temperature change due to the heat transfer rate, and then adjust the temperature of the cold room according to the temperature reaction value, and the temperature of the cold age can be adjusted at any time. ^皿度": The details and technology of the present invention are described in conjunction with the schematic description, such as [Embodiment] The method of refrigerating recording temperature control disclosed by the surrounding Xinming is mainly directed to the refrigeration caused by the temperature change of the 闾 闾The strange woman's temperature control method, therefore, first clear the 'two = handle, and when the temperature will change, the cold room position k 13 γ 3 external environment, will deviate from the standard φ temperature, such as "3rd Figure] This - the temperature changes, the refrigerating room will also produce 2 ^ = = 1), along with 2), and because the refrigerating room is more than half of the dish as shown in the figure, the heat effect, heat transfer rate Insulation wall, so as it is shown (9), in other words, the external environment ^ change = delay (as shown in Figure 7, after the refrigerator to change the temperature 2. 'In 1 change, will be in time According to this principle, please refer to "4th figure", first measure, ^μ = position to constant temperature control method, marriage), and according to this - temperature change, the temperature of the surrounding environment (step H to the corresponding temperature of the workplace 6 1278594 reaction value (variation) ( Sudoku), and dream name 403), if the delay time has not arrived until the call (the step temperature has a reversed change (reverse effect), ^ fruit temperature / (four) will cause the cold room to raise the temperature of the cold room, On the contrary, it will make this =: the front height has not been lowered; on the contrary, if the ambient temperature is raised, but what is the temperature in the storage room, there will be no low for the items in the refrigerator; whether it is waiting for the delay time to arrive After that, the party performs the cold and strict sounds. Therefore, it needs another aspect, if the delay time has not yet reached ^^^step = 404). The change ^ is adjusted accordingly, and for the division, the generation of 5 can first establish a refrigerating room performance database to accelerate the calculation of the H-father positive data. Here, for an embodiment, please refer to the control system ( Step 5 () 1), first refrigerate roomy $ 5 map"; ^ compartment curve and refrigerator temperature curve, ==== ambient temperature curve: 21. 64+6. 60*sin(^it The temperature change curve of the refrigerator compartment····························································· As shown, when the equivalent is measured around the degree ((4) 502), the environmental temperature change curve is introduced into the ^^20 0. 248, sln(〇2t) should also be -〇.248, so calculate the refrigeration ^ for the value 1. 9, that is, after the delay time of 2.5 hours, the refrigerator compartment; 1. 9 degree change (step 5Q3) 'To maintain a constant temperature of 3 degrees ^ the temperature needs to be corrected upwards by 1.1 degrees (step 504) , judge the time delay, whether it is reached (step 5G5), if not, then time time child $ 507), then go back to step 502 to repeat the execution, if it has arrived, the 1278594 room set temperature is increased by 1 curve For example, in the sixth figure (step 506), after the control of the present invention is used, the refrigerator compartment can be controlled to a constant temperature, and the present invention (4) is better than the above. The skilled person, in the absence of dislocation for use, can be used as a face-changing touch, so the scope of the patent application of the present invention is subject to the definition of the scope of the patent application. X consumption 畐 1 859 859 畐 畐 畐 畐 畐 畐 畐 畐 畐 畐 畐 畐 畐 畐^ 2^^^#Quasi-ice side test and performance curve. Curve. Know the temperature and test of the temperature of the refrigerator under variable ambient temperature ^.3Fig. _The temperature and performance curve of the ice temperature under Jingjing temperature 4 is the step of the method of the method of refrigerating and temperature control of the present invention. (4) Refrigeration chamber, the method of the method of the method is the temperature of the valve _ temperature control _ touch the refrigerator

Claims (1)

1278594 十、申請專利範圍: 1. 一種冷藏室恆溫控制的方法,係用以針對一冷藏室進行恆溫 控制,該方法係包含有下列步驟: 量測該冷藏室周圍環境之一溫度; 根據該溫度計算該冷藏室之溫度反應值; 等待一延遲時間;及 根據該溫度反應值校正該冷藏室之溫度。 2. 如申請專利範圍第1項所述之冷藏室恆溫控制的方法,其中 該延遲時間係根據該周圍環境溫度之變化改變該冷藏室之 溫度所需之熱傳時間所定義。 3. 如申請專利範圍第1項所述之冷藏室恆溫控制的方法,其中 該溫度反應值係藉由建立一該冷藏室性能資料庫所推算求 得。 4. 如申請專利範圍第3項所述之冷藏室恆溫控制的方法,其中 該冷藏室性能資料庫中包含有一環境溫度變化曲線與一冷 藏室溫度變化曲線。 5. 如申請專利範圍第4項所述之冷藏室恆溫控制的方法,其中 該環境溫度變化曲線係為一週期性變化曲線。 6. 如申請專利範圍第4項所述之冷藏室恆溫控制的方法,其中 該冷藏室溫度變化曲線係為一週期性變化曲線。 101278594 X. Patent application scope: 1. A method for constant temperature control of a refrigerating compartment, which is used for constant temperature control of a refrigerating compartment, the method comprising the steps of: measuring a temperature of a surrounding environment of the refrigerating compartment; Calculating a temperature reaction value of the refrigerating compartment; waiting for a delay time; and correcting the temperature of the refrigerating compartment based on the temperature reaction value. 2. The method of thermostat control of a refrigerating compartment according to claim 1, wherein the delay time is defined by a heat transfer time required to change a temperature of the refrigerating compartment according to a change in ambient temperature. 3. The method of thermostat control of a refrigerating compartment according to claim 1, wherein the temperature reaction value is calculated by establishing a refrigerating compartment performance database. 4. The method of thermostat control of a refrigerating compartment according to claim 3, wherein the refrigerating compartment performance database includes an ambient temperature change curve and a cold room temperature change curve. 5. The method of thermostat control of a refrigerating compartment according to claim 4, wherein the ambient temperature profile is a periodic variation curve. 6. The method of thermostat control of a refrigerating compartment according to claim 4, wherein the refrigerating compartment temperature profile is a periodic variation curve. 10
TW94146161A 2005-12-23 2005-12-23 Constant temperature control method for refrigeration compartment TWI278594B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW94146161A TWI278594B (en) 2005-12-23 2005-12-23 Constant temperature control method for refrigeration compartment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW94146161A TWI278594B (en) 2005-12-23 2005-12-23 Constant temperature control method for refrigeration compartment

Publications (2)

Publication Number Publication Date
TWI278594B true TWI278594B (en) 2007-04-11
TW200724833A TW200724833A (en) 2007-07-01

Family

ID=38645191

Family Applications (1)

Application Number Title Priority Date Filing Date
TW94146161A TWI278594B (en) 2005-12-23 2005-12-23 Constant temperature control method for refrigeration compartment

Country Status (1)

Country Link
TW (1) TWI278594B (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112179036A (en) * 2019-07-05 2021-01-05 青岛海尔电冰箱有限公司 Method and device for calculating refrigerator environment temperature
CN113587521A (en) * 2021-07-19 2021-11-02 珠海格力电器股份有限公司 Refrigerator cold storage chamber temperature control method and device, refrigerator and storage medium

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112179036A (en) * 2019-07-05 2021-01-05 青岛海尔电冰箱有限公司 Method and device for calculating refrigerator environment temperature
CN112179036B (en) * 2019-07-05 2022-04-26 青岛海尔电冰箱有限公司 Method and device for calculating refrigerator environment temperature
CN113587521A (en) * 2021-07-19 2021-11-02 珠海格力电器股份有限公司 Refrigerator cold storage chamber temperature control method and device, refrigerator and storage medium

Also Published As

Publication number Publication date
TW200724833A (en) 2007-07-01

Similar Documents

Publication Publication Date Title
US11521391B2 (en) Refrigerator, server and method of controlling thereof
CN109059226B (en) Control method of electronic expansion valve, air conditioner and computer readable storage medium
TWI278594B (en) Constant temperature control method for refrigeration compartment
Zhang et al. A correlation-free on-line optimal control method of heat rejection pressures in CO2 transcritical systems
Song et al. Defrosting start control strategy optimization for an air source heat pump unit with the frost accumulation and melted frost downwards flowing considered
CN110173946A (en) Refrigerating plant and its condensation prevention control method
CN107101347A (en) The control method and air-conditioning of frequency of air condition compressor
JP2011106792A (en) Performance evaluation device for inverter turbo refrigerator
CN109654652B (en) Air conditioner refrigeration/heat prediction method based on data mining technology
US20140298842A1 (en) Refrigeration cycle device
DE602004009634D1 (en) cooler
CN100555150C (en) The thermostatically controlled method of reefer
CN207263905U (en) A kind of LED light burn-in test cabinet
CN206665323U (en) Cold Chain Logistics intelligent mobile refrigerating box based on expanded material
CN102489354A (en) System for controlling constant temperature metal bath and method thereof
CN106765901A (en) The control method of convertible frequency air-conditioner
JPH11270913A (en) Designing method of refrigerating system
Tao et al. Performance study of an energy-efficient display case refrigerator
WO2022148089A1 (en) Refrigerator control method and apparatus, and storage medium and refrigerator
CN106322636B (en) A kind of air conditioner and its temperature regulating time forecasting system and method
CN108253604A (en) The control method and air conditioner of air conditioner
CN108253597A (en) Air conditioning control method and air conditioner
JP2014035128A (en) Refrigerator
FR2891613B1 (en) METHOD FOR CONTROLLING A QUICK COOLING CELL
CN108051104B (en) Portable refrigerator temperature field mapping system