TW202322886A - Dust collection system having a function of addressing deteriorated filter bag and positioning method for deteriorated filter bag thereof - Google Patents
Dust collection system having a function of addressing deteriorated filter bag and positioning method for deteriorated filter bag thereof Download PDFInfo
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Description
本發明係與集塵系統有關,特別有關於一種具有劣化濾袋定址功能的集塵系統及其劣化濾袋定址方法。The present invention is related to a dust collection system, in particular to a dust collection system with a function of addressing a deteriorated filter bag and a method for addressing a deteriorated filter bag.
袋式集塵系統是使汙染空氣通過多個濾袋來過濾空氣中的粉塵,藉以排出淨化空氣。The bag dust collection system is to make the polluted air pass through multiple filter bags to filter the dust in the air, so as to discharge the purified air.
當濾袋發生破損或劣化(如孔隙變大)時,濾袋的過濾能力會大幅降低,而導致淨化空氣的含塵量超出容許範圍內。上述情況不僅會造成空氣汙染,還可能讓工廠因違反環保法規而受罰。When the filter bag is damaged or deteriorated (for example, the pores become larger), the filtering capacity of the filter bag will be greatly reduced, and the dust content of the purified air will exceed the allowable range. The above situation not only causes air pollution, but also can make the factory fined for violating environmental protection regulations.
為了避免上述情況之發生,工廠必須定時派人對所有濾袋進行檢查,來發現破損或劣化的濾袋並進行更換。In order to avoid the above situation, the factory must regularly send personnel to check all filter bags to find damaged or deteriorated filter bags and replace them.
上述檢查必須耗費大量人力與時間,且需要工廠於檢查期間配合停工。並且,當濾袋數量越多時,上述檢查所耗費人力與時間也越多。The above-mentioned inspection must consume a lot of manpower and time, and requires the factory to stop working during the inspection. Moreover, when the number of filter bags is more, the above inspection will consume more manpower and time.
此外,雖然直接更換所有濾袋可減少檢查時間,但會大幅增加濾袋的成本。Additionally, while direct replacement of all filter bags reduces inspection time, it significantly increases the cost of the filter bags.
是以,現有袋式集塵系統存在上述問題,而亟待更有效的方案被提出。Therefore, the existing bag-type dust collection system has the above-mentioned problems, and a more effective solution is urgently needed to be proposed.
本發明之主要目的,係在於提供一種具有劣化濾袋定址功能的集塵系統及其劣化濾袋定址方法,可透過氣洗動作來自動對劣化濾袋進行定址。The main purpose of the present invention is to provide a dust collection system with the function of addressing the deteriorated filter bag and its addressing method for the deteriorated filter bag, which can automatically address the deteriorated filter bag through the air washing action.
於一實施例中,一種具有劣化濾袋定址功能的集塵系統,包含一噴氣裝置、一淨化端粉塵濃度計及電性連接該噴氣裝置及該淨化端粉塵濃度計的一控制裝置。該噴氣裝置包含多個噴氣管,該噴氣裝置用以透過該多個噴氣管朝多個濾袋噴氣,來吹落附著於該多個濾袋上的汙染物。該淨化端粉塵濃度計設置於該多個濾袋的一淨化側,用以感測一淨化後汙染值。該控制裝置被設定來基於一噴氣規律控制該多個噴氣管的多個型態組合進行噴氣,並取得各該型態組合噴氣後的該淨化後汙染值。該控制裝置被設定來於該淨化後汙染值達到一劣化條件時,於對應的該型態組合中決定朝向一劣化濾袋的該噴氣管,並對該噴氣管發出一濾袋劣化提示。In one embodiment, a dust collection system with a function of addressing a deteriorated filter bag includes an air injection device, a dust concentration meter at a purification end, and a control device electrically connected to the air injection device and the dust concentration meter at the purification end. The air injection device includes a plurality of air injection pipes, and the air injection device is used to inject air through the plurality of air injection pipes towards the plurality of filter bags to blow off the pollutants attached to the plurality of filter bags. The dust concentration meter at the cleaning end is arranged on a cleaning side of the plurality of filter bags for sensing a pollution value after cleaning. The control device is set to control multiple types of combinations of the plurality of air injection pipes to perform air injection based on an air injection rule, and obtain the post-purification pollution value after each type combination of air injection. The control device is set to determine the jet pipe facing a deteriorated filter bag in the corresponding type combination when the pollution value after purification reaches a deterioration condition, and issue a filter bag deterioration reminder to the jet pipe.
於一實施例中,一種集塵系統的劣化濾袋定址方法,包含:a) 基於一噴氣規律依序控制一噴氣裝置的多個噴氣管的多個型態組合來朝多個濾袋進行噴氣,來吹落附著於該多個濾袋上的汙染物;b) 透過設置於多個濾袋的一淨化側的一淨化端粉塵濃度計取得各該型態組合噴氣後的一淨化後汙染值;及,c) 於任一該淨化後汙染值符合一劣化條件時,於對應的該型態組合中決定朝向一劣化濾袋的該噴氣管,並對該噴氣管發出一濾袋劣化提示。In one embodiment, a method for addressing a degraded filter bag of a dust collection system includes: a) sequentially controlling a combination of multiple types of multiple air injection pipes of an air injection device based on an air injection law to inject air toward multiple filter bags , to blow off the pollutants attached to the multiple filter bags; b) obtain a post-purification pollution value after each type of combined air injection through a clean end dust concentration meter arranged on a clean side of multiple filter bags and, c) when any of the post-purification pollution values meet a deterioration condition, determine the jet pipe facing a deteriorated filter bag in the corresponding type combination, and issue a filter bag deterioration reminder to the jet pipe.
本發明可自動對劣化濾袋進行定址,且不需要停止集塵動作。The invention can automatically address the deteriorated filter bag without stopping the dust collecting action.
茲就本發明之一較佳實施例,配合圖式,詳細說明如後。A preferred embodiment of the present invention will be described in detail below in conjunction with the drawings.
本發明主要是提出一種具有劣化濾袋定址功能的集塵系統及其劣化濾袋定址方法,是透過設置於淨化側的淨化端粉塵濃度計來偵測是否存在劣化濾袋,並透過不同型態組合的氣洗動作來對劣化濾袋進行定址與必要的噴氣隔離手段避免進一步劣化濾袋。The present invention mainly proposes a dust collection system with the function of addressing the deteriorated filter bag and its addressing method for the deteriorated filter bag, which is to detect whether there is a deteriorated filter bag through the dust concentration meter at the purification end installed on the purification side, and through different types Combined air washing action to address the deteriorated filter bag and necessary air jet isolation to avoid further degradation of the filter bag.
更進一步地,本發明可藉由以不同的型態組合進行噴氣,並檢視淨化端粉塵濃度計所量測的淨化後汙染值,對劣化濾袋進行正確定址,並發出濾袋劣化提示。Furthermore, the present invention can correctly address the degraded filter bag and issue a filter bag deterioration reminder by combining different types of air injection and checking the post-purification pollution value measured by the dust concentration meter at the purification end.
此外,若完成劣化濾袋定址,但無法及時更換,則本發明可將劣化濾袋所對應的噴氣管設定為隔離狀態(不噴氣),以避免汙染淨化端。In addition, if the location of the deteriorated filter bag is completed but cannot be replaced in time, the present invention can set the air injection pipe corresponding to the deteriorated filter bag to an isolated state (no air injection) to avoid contamination of the purification end.
於一實施例中,前述氣洗動作可為逆向氣洗動作(逆洗動作)。逆洗動作是於各濾袋的淨化側(如濾袋內側)設置噴氣管,並透過噴氣管對濾袋噴出乾淨的高壓氣體。藉此,所噴出的高壓氣體可穿過濾袋並吹落附著於濾袋的汙染側(如外側)的汙染物(如粉塵),而可還原濾袋的過濾能力。In one embodiment, the aforementioned air washing action may be a reverse air washing action (backwashing action). The backwash action is to install an air injection pipe on the purification side of each filter bag (such as the inside of the filter bag), and spray clean high-pressure gas to the filter bag through the air injection pipe. In this way, the jetted high-pressure gas can pass through the filter bag and blow off the pollutants (such as dust) attached to the polluted side (such as the outside) of the filter bag, thereby restoring the filtering ability of the filter bag.
於一實施例中,前述氣洗動作可為正向氣洗動作(正洗動作)。正洗動作是於各濾袋的汙染側(如濾袋外側)設置噴氣管,並透過噴氣管對濾袋噴出乾淨的高壓氣體來直接吹落附著於濾袋的汙染側的汙染物,而還原濾袋的過濾能力。In one embodiment, the aforementioned air washing action may be a forward air washing action (positive washing action). The positive washing action is to install an air jet pipe on the polluted side of each filter bag (such as the outside of the filter bag), and spray clean high-pressure gas to the filter bag through the air jet pipe to directly blow off the pollutants attached to the polluted side of the filter bag, and restore The filter capacity of the filter bag.
值得一提的是,當濾袋發生破損或劣化時,前述氣洗動作會導致大量汙染物流入淨化測,而使得淨化側的汙染值大幅增加。It is worth mentioning that when the filter bag is damaged or deteriorated, the aforementioned air washing action will cause a large amount of pollutants to flow into the purification side, which will greatly increase the pollution value on the purification side.
本發明透過對各位置的濾袋執行上述逆洗動作與監測淨化側的汙染值,可決定各位置的濾袋是否發生破損或劣化,並還原濾袋的過濾能力。The present invention can determine whether the filter bags at each position are damaged or deteriorated and restore the filtering capacity of the filter bags by performing the above-mentioned backwashing action on the filter bags at each position and monitoring the pollution value on the purification side.
請參閱圖1,圖1為本發明一實施例的集塵系統的架構圖。本發明的集塵系統1主要包含噴氣裝置11、淨化端粉塵濃度計12及電性連接上述裝置的控制裝置10。Please refer to FIG. 1 . FIG. 1 is a structure diagram of a dust collection system according to an embodiment of the present invention. The
噴氣裝置11可包含多個噴氣管110。噴氣裝置11可輸送壓縮空氣至噴氣管110,來使噴氣管110朝濾袋20噴氣,來吹落附著於對應濾袋20上的汙染物。The
前述多個噴氣管110可分別設置在多個濾袋20的淨化測,並朝向各對應濾袋20的袋身以實現上述逆洗動作,但不以此限定。The aforementioned plurality of
淨化端粉塵濃度計12設置濾袋20的淨化側,並用來感測汙染空氣通過濾袋20後的淨化後汙染值。The clean end
於一實施例中,淨化端粉塵濃度計12可為光吸收粉塵計、光散射粉塵計、β射線粉塵計、靜電感應粉塵計、摩擦電原理(Triboelectricity)或其他類型的粉塵計。淨化端粉塵濃度計12可對環境空氣進行感測來取得感應電流訊號(單位可為mA),並將感應電流訊號轉換為前述淨化後汙染值(如粉塵濃度,單位可為mg/m3)。In one embodiment, the
控制裝置10可例如為個人電腦、工業電腦、控制電路版等電腦裝置。並且,控制裝置10可包含可程式化控制器,例如為CPU、微處理器、SoC、FPGA等。The
控制裝置10可被設定來取得事先設定的噴氣規律140(blowing pattern),並基於所取得的噴氣規律140控制多個噴氣管110的多個型態組合進行噴氣。於各型態組合噴氣完成後,控制裝置10透過淨化感測器取得各型態組合噴氣後的淨化後汙染值。The
控制裝置10還可被設定來於任一型態組合的淨化後汙染值符合預設的劣化條件時,於對應型態組合所涵蓋的一或多個噴氣管110中決定朝向劣化濾袋的噴氣管110,並對此噴氣管110發出濾袋劣化提示(如透過網路傳送文字通知,透過警報器發出聲音通知、透過指示燈發出燈光通知或透過顯示器發出影像通知),以通知管理員噴氣管110所對應的濾袋發生裂化或破損。The
藉此,本發明的集塵系統1可於對濾袋20執行氣洗過程中實現濾袋劣化的偵測與定址。Thereby, the
於一實施例中,前述噴氣規律140可用來將多個噴氣管110分為不同的多個型態組合(群組化),各型態組合包含不重複或部分重複的多個噴氣管110。前述噴氣規律140可定義多個型態組合的噴氣時序,例如定義多個型態組合的噴氣順序、噴氣時間、噴氣間隔等。In an embodiment, the above-mentioned
舉例來說,控制裝置10可基於噴氣順序選擇型態組合1來進行噴氣,基於噴氣時間控制所選擇的型態組合進行噴氣,並於噴氣完成後等待噴氣間隔並取得型態組合1的淨化汙染值。接著,控制裝置10可基於噴氣順序選擇型態組合2來進行噴氣,基於噴氣時間控制所選擇的型態組合進行噴氣,並於噴氣完成後等待噴氣間隔並取得型態組合2的淨化汙染值,以此類推。For example, the
於一實施例中,至少一型態組合包含多個噴氣管110,且至少一型態組合僅包含單一的噴氣管110。In one embodiment, at least one type combination includes a plurality of
請參閱圖5至圖7。圖5為本發明一實施例的噴氣規律的示意圖。圖6為本發明一實施例的修改後的噴氣規律的示意圖。圖7為本發明一實施例的修改後的噴氣規律的示意圖。See Figures 5 through 7. Fig. 5 is a schematic diagram of an air injection pattern according to an embodiment of the present invention. Fig. 6 is a schematic diagram of a modified air injection pattern according to an embodiment of the present invention. Fig. 7 is a schematic diagram of a modified air injection pattern according to an embodiment of the present invention.
於本實施例中,集塵系統1包含10個噴氣管110,分別為Port 1至Port 10。In this embodiment, the
如圖5(I)所示,控制裝置10可同時控制所有Port 1至Port 10同時噴氣。As shown in FIG. 5(I), the
如圖5(II)所示,Port 1至Port 10被分為兩個型態組合。Port 1、Port 3、Port 5、Port 7與Port 9為第一型態組合。Port 2、Port 4、Port 6、Port 8、Port 10為第二型態組合。控制裝置10可控制第一型態組合與第二組和輪流噴氣(噴氣規律140)。As shown in FIG. 5(II),
如圖5(III)所示,Port 1至Port 10被分為三個型態組合。Port 1、Port 4、Port 7與Port 10為第一型態組合。Port 2、Port 5與Port 8為第二型態組合。Port 3、Port 6與Port 9為第三型態組合。控制裝置10可控制第一型態組合、第二型態組合與第三組和輪流噴氣(噴氣規律140)。As shown in FIG. 5(III),
並且,當第二型態組合噴氣後偵測到淨化汙染值超標,可判定Port 2、Port 5與Port 8至少其中之一所對應的濾袋20發生劣化。Moreover, when it is detected that the purification pollution value exceeds the standard after the second type of combined air injection, it can be determined that the
接著,透過後述之劣化濾袋定址方法,可決定Port 8所對應的濾袋20發生劣化。Then, through the degraded filter bag addressing method described later, it can be determined that the
如圖6所示,於識別Port 8所對應的濾袋20發生劣化後,每次執行第二型態組合的噴氣時,集塵系統1可修改噴氣規律140來使Port 8不噴氣(隔離狀態),直到更換新的濾袋20。As shown in Figure 6, after identifying the deterioration of the
如圖7所示,於識別Port 8所對應的濾袋20發生劣化後,每次執行第二型態組合的噴氣時,集塵系統1可修改噴氣規律140來使Port 7替代Port 8進行噴氣,直到更換新的濾袋20。As shown in FIG. 7 , after identifying the deterioration of the
藉此,本發明可避免對劣化的濾袋執行氣洗,而導致淨化後汙染值超標。In this way, the present invention can avoid performing air washing on the degraded filter bag, which will cause the pollution value after purification to exceed the standard.
請參閱圖2,圖2為本發明一實施例的集塵系統的架構圖。Please refer to FIG. 2 . FIG. 2 is a structure diagram of a dust collection system according to an embodiment of the present invention.
於本實施例中,噴氣裝置11可包含供氣裝置112與多個氣閥111。In this embodiment, the
供氣裝置112作為高壓氣體源,用來提供高壓氣體至氣體管線,來透過氣體管線輸送高壓氣體至氣閥111。供氣裝置112可包含高壓打氣機或壓縮空氣槽等,但不加以限定。The
多個氣閥111(例如為電磁閥)分別設置於從供氣裝置112通往噴氣管110的氣體供氣管道。多個氣閥111用來控制流動至各噴氣管110的高壓氣體量。A plurality of gas valves 111 (such as solenoid valves) are respectively provided in the gas supply pipelines leading from the
舉例來說,當氣閥111關閉時,可阻擋高壓氣體流動至對應的噴氣管111。當氣閥111開啟50%時,可引入50%的最大瞬時量的高壓氣體至噴氣管110。當氣閥111完全開啟(100%)時,可引入100%的最大瞬時量的高壓氣體至噴氣管110。For example, when the
於一實施例中,控制裝置10可包含順序控制板100。順序控制板100為電路控制板,電性連接供氣裝置112與多個氣閥111。順序控制板100可基於噴氣規律140來控制多個氣閥111的開啟/關閉狀態。In one embodiment, the
於一實施例中,順序控制板100可例如為桓達科技股份有限公司之AEX 可程式順序控制器,但不加以限定。In one embodiment, the
於一實施例中,當氣閥111的數量過多,而無法透過單一順序控制板100連接所有氣閥111時,控制裝置10可進一步包含一或多個擴充版101。In one embodiment, when the number of
各擴充版101電性連接順序控制板100,並作為順序控制板100的擴充介面。Each
具體而言,各擴充版101可用來電性連接一部分的氣閥111。並且,順序控制板100,可電性連接另一部分的多個氣閥111。Specifically, each
於設置完成後,順序控制板100可直接控制所連接的多個氣閥111的開啟/關閉,並可透過各擴充版101來控制各擴充版101所連接的多個氣閥111的開啟/關閉。藉此,本發明可以解決順序控制板100的連接介面不足的問題。After the setting is completed, the
於一實施例中,順序控制板100與各擴充版101可包含顯示器或指示燈,前述顯示器或指示燈可用來指示所連接的多個氣閥11的狀態。In one embodiment, the
於一實施例中,集塵系統1可包含電性連接控制裝置10的儲存裝置14。儲存裝置14可用來儲存資料(如噴氣規律140及/或劣化條件141),並可包含ROM、EEPROM、RAM、或快閃記憶體等儲存媒體。In one embodiment, the
於一實施例中,儲存裝置14可為控制裝置10的內建儲存器或外接儲存器,但不加以限定。In one embodiment, the
儲存裝置14可包含非暫態電腦可讀取記錄媒體,前述非暫態電腦可讀取記錄媒體儲存有電腦程式142,電腦程式142記錄有電腦可執行之程式碼,當控制裝置10執行前述程式碼後,可實現本發明之各實施例的控制功能與劣化濾袋定址方法。一實施例中,集塵系統1可包含電性連接控制裝置10的汙染端粉塵濃度計13。汙染端粉塵濃度計13可為與淨化端粉塵濃度計12相同或相似類型的粉塵濃度計。汙染端粉塵濃度計13是設置於濾袋20的汙染側,並用來感測汙染空氣未通過濾袋20前的淨化前汙染值。The
藉此,本發明透過比較淨化前汙染值與淨化後汙染值可以獲得集塵系統1目前的過濾能力。In this way, the present invention can obtain the current filtering capacity of the
請參閱圖3,圖3為本發明一實施例的集塵系統的工作示意圖。Please refer to FIG. 3 . FIG. 3 is a working diagram of a dust collection system according to an embodiment of the present invention.
於本實施例中,集塵系統1更包含進氣口30、氣室31、出氣口32、多個膜片閥34與集塵槽35。In this embodiment, the
於本實施例中,汙染端粉塵濃度計13可設置於進氣口30,量測尚未經過濾袋的汙染情形,淨化端粉塵濃度計12可設置於出氣口32,量測經過濾袋過濾後排放的空氣淨化情形,氣閥111為電磁閥33。In this embodiment, the
含粉塵的汙染空氣從進氣口30被引入至氣室31的下半部(汙染側),穿透多個濾袋20來到氣室31的上半部(淨化側)由於粉塵會被留在濾袋20的汙染側而成為淨化空氣。接著,淨化空氣從出氣口32被排出。Dust-containing polluted air is introduced into the lower half (pollution side) of the
當要對濾袋20進行氣洗動作(以逆洗動作為例)時,供氣裝置112透過管道輸送高壓氣體至電磁閥33。電磁閥33開啟而使得高壓氣體透過管道被輸送至多個膜片閥34。When the
接著,高壓氣體衝開多個膜片閥34來吹落附著於濾袋20上的粉塵以執行氣洗。Next, the high-pressure gas flushes open a plurality of
前述膜片閥34為集塵機專用膜片閥,並由一膜片分隔為上、下二充氣室。二充氣室間藉由導孔相通,前述導孔的口徑小於電磁閥的洩氣孔的口徑。當電磁閥的洩氣孔打開時,上充氣室急速洩氣的速度遠大於由導管進入的高壓氣體。上充氣室的壓力突然下降,而使得壓力較大之下充氣室的高壓氣體衝開膜片。高壓氣體由膜片閥流至濾袋20,並將附著的粉塵震落。並且,被震落的粉塵落於集塵槽35而完成集塵。The
當電磁閥的洩氣孔關閉時,兩充氣室壓力又趨於相等,本體彈簧將膜片下壓,蓋住閥體。When the vent hole of the solenoid valve is closed, the pressures of the two inflatable chambers tend to be equal again, and the body spring presses down the diaphragm to cover the valve body.
請參閱圖4,圖4為本發明一實施例的集塵系統的外觀示意圖。Please refer to FIG. 4 . FIG. 4 is a schematic diagram of the appearance of a dust collecting system according to an embodiment of the present invention.
於本實施例中,集塵系統1包含進氣口40、氣室41、出氣口42、集塵槽45與下料口46。進氣口40、汙染測、多個濾袋47、淨化測及出氣口42形成氣體流道。In this embodiment, the
進氣口40用來引入汙染氣體。氣室41用來設置多個濾袋47。氣室41透過多個濾袋47的設置劃分為連通出氣口42的淨化測與連通進氣口41的汙染測。出氣口42用來排出淨化氣體。The
集塵槽45用來收集汙染物(如粉塵)。下料口46設置於集塵槽45,並用來排出集塵槽45所儲存的汙染物。The
供氣管道可包含供氣主管50、多個供氣支管52與多個噴氣管53。The air supply pipeline may include an air supply
供氣主管50連接多個供氣支管52。各供氣支管52連接一或多個噴氣管53(圖4的供氣支管52都是連接多個噴氣管53)。各噴氣管53設置於對應的濾袋47的內側。The gas supply
於本實施例中,多個氣閥51分別設置於各供氣支管與供氣主管之間,如連接處。In this embodiment, a plurality of
各氣閥51於被開啟時使供氣主管50與對應的供氣支管52連通,而使高壓氣體可從供氣主管50透過對應的供氣支管52被輸送至多個噴氣管53。When each
各氣閥51於被關閉時隔離空氣主管50與對應的供氣支管52,而使得高壓氣體被擋於供氣主管50內。When each
請參閱圖16,圖16為本發明一實施例的劣化濾袋定址方法的流程圖。本實施例的劣化濾袋定址方法包含用來實現劣化偵測的步驟S10-S14,並可進一步包含用來於偵測到劣化濾袋後自動修改噴氣規律140的步驟S15。Please refer to FIG. 16 . FIG. 16 is a flowchart of a method for addressing a deteriorated filter bag according to an embodiment of the present invention. The method for addressing a deteriorated filter bag in this embodiment includes steps S10-S14 for realizing deterioration detection, and may further include a step S15 for automatically modifying the
步驟S10:控制裝置10基於噴氣規律140依序控制噴氣裝置11的多個噴氣管110的多個型態組合來朝多個濾袋20進行噴氣,來吹落附著於多個濾袋20上的汙染物。Step S10: The
步驟S11:控制裝置10透過淨化端粉塵濃度計12取得各型態組合噴氣後的淨化後汙染值。Step S11: The
步驟S12:控制裝置10判斷是否淨化後汙染值符合劣化條件,如淨化後汙染值超過預設的劣化臨界值。Step S12: The
於淨化後汙染值符合劣化條件時,控制裝置10執行步驟S13。When the pollution value after purification meets the degradation condition, the
步驟S13:控制裝置10於淨化後汙染值符合劣化條件的型態組合的一或多個噴氣管110中,決定朝向劣化濾袋的噴氣管110,並對此噴氣管11發出濾袋劣化提示。Step S13: The
於淨化後汙染值不符劣化條件或步驟S13執行完畢後時,控制裝置10執行步驟S14。When the pollution value after purification does not meet the degradation condition or after step S13 is executed, the
步驟S14:控制裝置10判斷是否停止劣化偵測,如已完成所有濾袋20的氣洗動作、用戶關閉劣化偵測等。Step S14: The
於不需停止劣化偵測時,控制裝置10再次執行步驟S10以持續執行氣洗動作與劣化偵測。When there is no need to stop the degradation detection, the
於停止劣化偵測且有偵測到任一濾袋20發生劣化時,控制裝置10執行步驟S15。When the deterioration detection is stopped and any
步驟S15:控制裝置10修改噴氣規律140,來設定朝向此劣化濾袋的噴氣管110為不噴氣(隔離狀態)。Step S15: The
於一實施例中,控制裝置10可進一步修改噴氣規律140,來以其他噴氣管110代替朝向劣化濾袋的噴氣管110進行噴氣,以停止使用朝向劣化濾袋的噴氣管110,來避免濾袋進一步劣化。In one embodiment, the
本發明不需要停止集塵,即可有效偵測劣化濾袋是否存在,並對劣化濾袋進行定址。The present invention can effectively detect whether the deteriorated filter bag exists without stopping dust collection, and address the deteriorated filter bag.
請參閱圖8、圖14與圖15,圖8為本發明一實施例的噴氣規律的示意圖,圖14為本發明一實施例的噴氣規律的示意圖,圖15為本發明一實施例的噴氣規律的示意圖。Please refer to Fig. 8, Fig. 14 and Fig. 15, Fig. 8 is a schematic diagram of an air injection law according to an embodiment of the present invention, Fig. 14 is a schematic diagram of an air injection law according to an embodiment of the present invention, and Fig. 15 is a schematic diagram of an air injection law according to an embodiment of the present invention schematic diagram.
如圖8、圖14與圖15的實施例中,集塵系統1包括16個噴氣管,分別為A1-A4、B1-B4、C1-C4與D1-D4。In the embodiment shown in FIG. 8 , FIG. 14 and FIG. 15 , the
圖8所示的噴氣規律是將16個噴氣管分為四個型態組合,分別為噴氣管A1-A4(第一型態組合)、噴氣管B1-B4(第二型態組合)、噴氣管C1-C4(第三型態組合)與噴氣管D1-D4(第四型態組合)。The air injection rule shown in Figure 8 is to divide the 16 air injection pipes into four types of combinations, which are respectively air injection pipes A1-A4 (first type combination), air injection pipes B1-B4 (second type combination), air injection Tubes C1-C4 (combination of the third type) and jet tubes D1-D4 (combination of the fourth type).
如圖8(i)所示,於第一週期中,控制裝置10控制噴氣管A1-A4(第一型態組合)噴氣,並感測第一型態組合的第一淨化後汙染值。As shown in FIG. 8( i ), in the first cycle, the
如圖8(ii)所示,於第二週期中,控制裝置10控制噴氣管B1-B4(第二型態組合)噴氣,並感測第二型態組合的第二淨化後汙染值。As shown in FIG. 8(ii), in the second cycle, the
如圖8(iii)所示,於第三週期中,控制裝置10控制噴氣管C1-C4(第三型態組合)噴氣,並感測第三型態組合的第三淨化後汙染值。As shown in FIG. 8(iii), in the third cycle, the
並且,於第三週期中,控制裝置10偵測到第三型態組合的第三淨化後汙染值符合劣化條件,而可以判定噴氣管C1-C4的至少其中之一所朝向的濾袋20發生劣化。And, in the third cycle, the
如圖8(iv)所示,於第四週期中,控制裝置10控制噴氣管D1-D4(第四型態組合)噴氣,並感測第四型態組合的第一淨化後汙染值。As shown in FIG. 8(iv), in the fourth cycle, the
圖14所示的噴氣規律是將16個噴氣管分為兩個型態組合,分別為噴氣管A1-A2、B2-B3、C3-C4、D1與D4(第一型態組合)、噴氣管A3-A4、B1、B4、C1-C2與D2-D3(第二型態組合)。The air injection rule shown in Figure 14 is to divide the 16 air injection pipes into two types of combinations, respectively, air injection pipes A1-A2, B2-B3, C3-C4, D1 and D4 (first type combination), air injection pipes A3-A4, B1, B4, C1-C2 and D2-D3 (second type combination).
如圖14(i)所示,於第一週期中,控制裝置10控制第一型態組合噴氣,並感測第一型態組合的第一淨化後汙染值。As shown in FIG. 14( i ), in the first cycle, the
如圖14(ii)所示,於第二週期中,控制裝置10控制第二型態組合噴氣,並感測第二型態組合的第二淨化後汙染值。As shown in FIG. 14(ii), in the second cycle, the
圖15所示的噴氣規律是將16個噴氣管分為兩群,分別為噴氣管A1-A4、B1-B4、C1-C4、D1-D4(第一群)與B2-B3、C2-C3(第二群)。The air injection rule shown in Figure 15 is to divide the 16 air injection pipes into two groups, namely the air injection pipes A1-A4, B1-B4, C1-C4, D1-D4 (the first group) and B2-B3, C2-C3 (second group).
並且,第一群與第二群具有不同的輪替頻率,第一群因為過濾頻率較低,設定為四週期/次,第二群因為過濾頻率較高,縮減為兩週期/次。Moreover, the first group and the second group have different alternate frequencies, the first group is set to four cycles/time because the filtering frequency is low, and the second group is reduced to two cycles/time because the filtering frequency is high.
更進一步地,第一群具有四個型態組合,分別為A1-A4(第一型態組合)、B1-B4(第二型態組合)、C1-C4(第三型態組合)與D1-D4(第四型態組合)。第二群具有兩個型態組合,分別為B2、C3(第五型態組合)與B3、C2(第六型態組合)。Furthermore, the first group has four type combinations, namely A1-A4 (the first type combination), B1-B4 (the second type combination), C1-C4 (the third type combination) and D1 -D4 (fourth form combination). The second group has two type combinations, namely B2, C3 (fifth type combination) and B3, C2 (sixth type combination).
如圖15(i)所示,於第一週期中,控制裝置10控制第一型態組合與第五型態組合噴氣,並感測第一型態組合與第五型態組合共同的第一淨化後汙染值。As shown in Fig. 15(i), in the first cycle, the
如圖15(ii)所示,於第二週期中,控制裝置10控制第二型態組合與第六型態組合噴氣,並感測第二型態組合與第六型態組合的第二淨化後汙染值。As shown in FIG. 15(ii), in the second period, the
如圖15(iii)所示,於第三週期中,控制裝置10控制第三型態組合與第五型態組合噴氣,並感測第三型態組合與第五型態組合共同的第三淨化後汙染值。As shown in Fig. 15(iii), in the third cycle, the
如圖15(iv)所示,於第四週期中,控制裝置10控制第四型態組合與第六型態組合噴氣,並感測第四型態組合與第六型態組合的第四淨化後汙染值。As shown in Figure 15(iv), in the fourth cycle, the
請參閱圖16與圖17,圖17為本發明一實施例的劣化濾袋定址方法的部分流程圖。相較於圖16的實施例的劣化濾袋定址方法,圖17的劣化濾袋定址方法的步驟S13包含用來執行劣化濾袋定址的步驟S20-S24。Please refer to FIG. 16 and FIG. 17 . FIG. 17 is a partial flowchart of a method for addressing a deteriorated filter bag according to an embodiment of the present invention. Compared with the method for addressing deteriorated filter bags in the embodiment of FIG. 16 , step S13 of the method for addressing deteriorated filter bags in FIG. 17 includes steps S20-S24 for performing addressing for deteriorated filter bags.
步驟S20:於任一型態組合的淨化後汙染值符合劣化條件時,控制裝置10縮小或變更組合,並以新的型態組合再次執行噴氣。Step S20: When the pollution value after purification of any type combination meets the deterioration condition, the
於一實施例中,控制裝置10可基於觸發時間來進行定址。具體而言。控制裝置10可取得各噴氣管110的觸發時間(如噴氣後至取得淨化後汙染值所需時間),並取得從目前的型態組合噴氣至收到淨化後汙染值的反應時間,並將反應時間與各噴氣管110的觸發時間進行比較,來決定符合的噴氣管110作為濾袋劣化的噴氣管。In one embodiment, the
步驟S21:控制裝置10透過淨化端粉塵濃度計12取新的型態組合的淨化後汙染值。Step S21: The
步驟S22:控制裝置10判斷是否淨化後汙染值符合劣化條件。Step S22: The
於淨化後汙染值不符劣化條件時,控制裝置10執行步驟S14。When the pollution value after purification does not meet the degradation condition, the
於淨化後汙染值符合劣化條件時,控制裝置10執行步驟S23。When the pollution value after purification meets the degradation condition, the
步驟S23:控制裝置10判斷是否完成劣化濾袋定址,如是否能確定哪一個噴氣管110朝向的濾袋20發生劣化,或者已嘗試過所有可能縮小或變更組合方式,仍無法確定劣化濾袋所對應的噴氣管110。Step S23: The
於未完成劣化濾袋定址時,控制裝置10再次執行步驟S20以持續定址。When the addressing of the deteriorated filter bag is not completed, the
於完成劣化濾袋定址時,控制裝置10執行步驟S24。When the addressing of the deteriorated filter bag is completed, the
步驟S24:控制裝置10對朝向劣化濾袋的噴氣管11發出濾袋劣化提示。Step S24: The
於一實施例中,以縮小組合為例,控制裝置10可將型態組合分為多個子組合,並以多個子組合進行噴氣。前述型態組合的噴氣管數量是大於各子組合的噴氣管數量。In one embodiment, taking the reduced combination as an example, the
控制裝置10 可執行以下步驟來進行定址:以此型態組合的多個子組合進行噴氣;取得各態組合噴氣後的淨化後汙染值;及,於任一淨化後汙染值符合劣化條件時,縮小子組合來再次噴氣與感測,直到決定朝向劣化濾袋的噴氣管110。The
請參閱圖8與圖9,圖9為本發明一實施例的噴氣規律的示意圖。Please refer to FIG. 8 and FIG. 9 . FIG. 9 is a schematic diagram of an air injection pattern according to an embodiment of the present invention.
於圖8中判定噴氣管C1-C4(第三型態組合)的至少其中之一所朝向的濾袋20發生劣化。In FIG. 8 , it is determined that the
對此,控制裝置10可將第三型態組合分為兩個子組合,來進行噴氣,兩個子組合分別為C1-C2(第一子組合)與C2-C4(第二子組合)。In this regard, the
如圖9(i)所示,於第五週期中,控制裝置10控制第一子組合噴氣,並感測第一子組合的淨化後汙染值。As shown in FIG. 9( i ), in the fifth cycle, the
如圖9(ii)所示,於第六週期中,控制裝置10控制第二子組合噴氣,並感測第二子組合的淨化後汙染值。As shown in FIG. 9(ii), in the sixth cycle, the
並且,於第六週期中,控制裝置10偵測到第二子組合的淨化後汙染值符合劣化條件,而可以判定噴氣管C3-C4的至少其中之一所朝向的濾袋20發生劣化。Moreover, in the sixth cycle, the
對此,控制裝置10可將第二子組合再分為兩個子組合,來進行噴氣,兩個子組合分別為C3(第三子組合)與C4(第四子組合)。For this, the
如圖9(iii)所示,於第七週期中,控制裝置10控制第三子組合噴氣,並感測第三子組合的淨化後汙染值。As shown in FIG. 9(iii), in the seventh cycle, the
如圖9(iv)所示,於第八週期中,控制裝置10控制第四子組合噴氣,並感測第四子組合的淨化後汙染值。As shown in FIG. 9(iv), in the eighth cycle, the
並且,於第八週期中,控制裝置10偵測到第四子組合的淨化後汙染值符合劣化條件,而可以判定噴氣管C4所朝向的濾袋20發生劣化。Moreover, in the eighth cycle, the
藉此,本發明可準確地對劣化濾袋進行定址。Thereby, the present invention can accurately address the deteriorated filter bag.
於一實施例中,基於觸發時間來進行定址為例,控制裝置10可取得此型態組合的各噴氣管110的觸發時間,並透過目前的淨化後汙染值的反應時間與各噴氣管110的觸發時間,來決定濾袋劣化的噴氣管110。In one embodiment, addressing based on the trigger time is taken as an example. The
具體而言,控制裝置10 可執行以下步驟來進行定址:取得管道風速與多個濾袋20至淨化端粉塵濃度計12的多個觸發距離(可預先儲存於儲存裝置14);基於管道風速與多個觸發距離計算多個噴氣管110的多個觸發時間;取得從此型態組合噴氣至收到對應的淨化後汙染值的反應時間;及,選擇觸發時間符合反應時間的噴氣管110作為濾袋劣化的噴氣管110。Specifically, the
請一併參閱圖8、圖10與圖11,圖10為本發明一實施例的噴氣控制與汙染值的關係圖。圖11為本發明一實施例的觸發時間表的示意圖。Please refer to FIG. 8 , FIG. 10 and FIG. 11 together. FIG. 10 is a relationship diagram between air injection control and pollution value according to an embodiment of the present invention. FIG. 11 is a schematic diagram of a trigger schedule according to an embodiment of the present invention.
如圖10所示,於時間區間0-t1(噴氣時間),控制裝置10控制第一型態組合(噴氣管A1-A4)持續噴氣。於時間區間t1-t2(噴氣間隔),控制裝置10控制所有型態組合停止噴氣,並透過淨化端粉塵濃度計12取得第一型態組合的淨化後汙染值(汙染值)。As shown in FIG. 10 , during the time interval 0-t1 (air injection time), the
於時間區間t2-t3(噴氣時間),控制裝置10控制第二型態組合(噴氣管B1-B4)持續噴氣。於時間區間t3- t4(噴氣間隔),控制裝置10控制所有型態組合停止噴氣,並透過淨化端粉塵濃度計12取得第二型態組合的淨化後汙染值。During the time interval t2-t3 (air injection time), the
於時間區間t4-t5(噴氣時間),控制裝置10控制第三型態組合(噴氣管C1-C4)持續噴氣。於時間區間t5- t6(噴氣間隔),控制裝置10控制所有型態組合停止噴氣,並透過淨化端粉塵濃度計12取得第三型態組合的淨化後汙染值。During the time interval t4-t5 (air injection time), the
並且,於接近t6的時間點(如t5+6.9秒),控制裝置10透過淨化端粉塵濃度計12偵測到淨化後汙染值符合劣化條件。換句話說,噴氣管C1-C4的其中之一是朝向劣化濾袋。Moreover, at a time point close to t6 (for example, t5+6.9 seconds), the
於時間區間t6-t7(噴氣時間),控制裝置10控制第四型態組合(噴氣管D1-D4)持續噴氣。於時間區間t7- t8(噴氣間隔),控制裝置10控制所有型態組合停止噴氣,並透過淨化端粉塵濃度計12取得第四型態組合的淨化後汙染值。During the time interval t6-t7 (air injection time), the
如圖11所示,控制裝置10可計算各噴氣管的觸發時間,並取得反應時間(6.9秒)。接著,將反應時間與各噴氣管的觸發時間進行比較,以決定時間最接近的噴氣管,為噴氣管C4(7秒)。As shown in FIG. 11 , the
藉此,控制裝置10可判定噴氣管C4所朝向的濾袋發生劣化。Thereby, the
值得一提的是,前述噴氣間隔必須大於所有噴氣管的觸發時間,以便能夠基於時間差正確地偵測劣化濾袋的噴氣管。It is worth mentioning that the aforementioned air injection interval must be greater than the trigger time of all air injection pipes, so that the air injection pipes of deteriorated filter bags can be detected correctly based on the time difference.
於一實施例中,以變更組合為例,控制裝置10可設定與目前使用的型態組合(原型態組合)不同的另一型態組合(下稱變更組合),並以變更組合進行噴氣。前述各變更組合的噴氣管010與原型態組合的噴氣管010僅有部分重複。In one embodiment, taking the change combination as an example, the
控制裝置10 可執行以下步驟來進行定址:以與原型態組合部分重複的多個變更組合進行噴氣;取得各變更組合噴氣後的淨化後汙染值;決定噴氣後的淨化後汙染值符合劣化條件的變更組合;及,設定於變更組合與原型態組合中重複的噴氣管110作為朝向劣化濾袋的噴氣管110。The
請參閱圖8與圖12,圖12為本發明一實施例的噴氣規律的示意圖。Please refer to FIG. 8 and FIG. 12 . FIG. 12 is a schematic diagram of an air injection pattern according to an embodiment of the present invention.
圖12所示的噴氣規律是將16個噴氣管分為四個變更組合,分別為噴氣管A1、B1、C1、D1(第一變更組合)、噴氣管A2、B3、C3、D3 (第二變更組合)、噴氣管A3、B3、C3、D3 (第三變更組合)與噴氣管A4、B4、C4、D4(第四變更組合)。The air injection rule shown in Figure 12 is to divide 16 air injection pipes into four change combinations, respectively air injection pipes A1, B1, C1, D1 (the first change combination), air injection pipes A2, B3, C3, D3 (the second change combination), air jets A3, B3, C3, D3 (the third change combination) and air jets A4, B4, C4, D4 (the fourth change combination).
如圖12(i)所示,於第五週期中,控制裝置10控制第一變更組合噴氣,並感測第一變更組合的淨化後汙染值。As shown in FIG. 12( i ), in the fifth cycle, the
如圖12(ii)所示,於第六週期中,控制裝置10控制第二變更組合噴氣,並感測第二變更組合的淨化後汙染值。As shown in FIG. 12(ii), in the sixth cycle, the
如圖12(iii)所示,於第七週期中,控制裝置10控制第三變更組合噴氣,並感測第三變更組合的淨化後汙染值。As shown in FIG. 12(iii), in the seventh cycle, the
如圖12(iv)所示,於第八週期中,控制裝置10控制第四變更組合噴氣,並感測第四變更組合的淨化後汙染值。As shown in FIG. 12(iv), in the eighth cycle, the
並且,於第八週期中,控制裝置10偵測到第四變更組合的淨化後汙染值符合劣化條件,而可以判定噴氣管A4、B4、C4、D4的至少其中之一所朝向的濾袋20發生劣化。And, in the eighth cycle, the
並且,於圖8的偵測中,已判定噴氣管C1-C4的至少其中之一所朝向的濾袋20發生劣化。Moreover, in the detection of FIG. 8 , it has been determined that the
因此,整合上述偵測結果,可決定噴氣管C4(第三型態組合與第四變更組合的重疊部分)所對應的濾袋20發生劣化。Therefore, by integrating the above detection results, it can be determined that the
請參閱圖8與13,圖13為本發明一實施例的修改後的噴氣規律的示意圖。Please refer to FIGS. 8 and 13 . FIG. 13 is a schematic diagram of a modified air injection pattern according to an embodiment of the present invention.
於完成劣化濾袋的定址後,控制裝置10可修改噴氣規律,如停用劣化濾袋所對應的噴氣管C4,並以周圍的噴氣管B4、D4取代。After completing the addressing of the deteriorated filter bag, the
修改後的噴氣規律具體執行如下。The specific implementation of the modified jet law is as follows.
如圖13(i)所示,於第一週期中,控制裝置10控制噴氣管A1-A4(第一型態組合)噴氣。As shown in FIG. 13(i), in the first period, the
如圖13(ii)所示,於第二週期中,控制裝置10控制噴氣管B1-B4(第二型態組合)噴氣。As shown in FIG. 13(ii), in the second cycle, the
如圖13(iii)所示,於第三週期中,控制裝置10控制噴氣管C1-C3、B4、D4(修改後的第三型態組合)噴氣。As shown in FIG. 13(iii), in the third cycle, the
藉此,透過增加噴氣管B4、D4來彌補停用噴氣管C3所降低的集塵效能。In this way, the reduced dust collection efficiency caused by disabling the air injection pipe C3 is compensated by increasing the air injection pipes B4 and D4.
如圖13(iv)所示,於第四週期中,控制裝置10控制噴氣管D1-D4(第四型態組合)噴氣。As shown in FIG. 13(iv), in the fourth period, the
圖18為本發明一實施例的劣化濾袋定址方法的部分流程圖。於本實施例中,劣化條件包含同一型態組合噴氣後的淨化後汙染值超過劣化臨界值的累積次數達劣化臨界次數。Fig. 18 is a partial flowchart of a method for addressing a deteriorated filter bag according to an embodiment of the present invention. In this embodiment, the deterioration condition includes the cumulative number of times that the pollution value after purification after the combined air injection of the same type exceeds the deterioration threshold and reaches the deterioration threshold.
相較於圖16的實施例的劣化濾袋定址方法,圖18的劣化濾袋定址方法的步驟S12包含用來執行劣化條件判斷的步驟S30-S32。Compared with the degraded filter bag addressing method in the embodiment of FIG. 16 , step S12 of the degraded filter bag addressing method in FIG. 18 includes steps S30 - S32 for performing degradation condition judgment.
步驟S30:控制裝置10判斷淨化後汙染值是否符合預設的劣化臨界值。前述劣化臨界值可例如為政府規定或工廠自行設定的最大汙染濃度的上限值。Step S30: the
於淨化後汙染值不符劣化臨界值時,控制裝置10執行步驟S14。When the pollution value after purification does not meet the deterioration threshold value, the
於淨化後汙染值符合劣化臨界值時,控制裝置10執行步驟S31。When the pollution value after purification meets the deterioration threshold value, the
步驟S31:控制裝置10對目前的型態組合進行多次重測,來取得多次重測的淨化後汙染值。Step S31: The
前述重測的次數可依需求任意設定,例如為大於累積次數。The number of retests mentioned above can be set arbitrarily according to requirements, for example, it is greater than the cumulative number of times.
步驟S32:控制裝置10判斷多次重測獲得的多個淨化後汙染值是否超過淨化後汙染值。Step S32: The
若多次重測獲得的多個淨化後汙染值是否超過淨化後汙染值(例如超過淨化後汙染值的次數大於預設的累積次數,如5次),則判定濾袋20發生劣化,並執行步驟S13。If multiple re-measurement of multiple purification pollution values obtained exceeds the purification pollution value (for example, the number of times exceeding the purification pollution value is greater than the preset cumulative number of times, such as 5 times), then it is determined that the
若多次重測獲得的多個淨化後汙染值超過淨化後汙染值達累積次數,則判定濾袋20發生劣化,並執行步驟S13。If the post-purification pollution values obtained by multiple re-measurements exceed the post-purification pollution value for a cumulative number of times, it is determined that the
若多次重測獲得的多個淨化後汙染值未超過淨化後汙染值或者雖超過但未達累積次數,則可判定濾袋20未發生劣化,並執行步驟S14。If the multiple post-purification pollution values obtained by multiple re-measurements do not exceed the post-purification pollution value or exceed but do not reach the cumulative number of times, it can be determined that the
藉此,本發明可降低誤判,而提升偵測精確度。Therefore, the present invention can reduce misjudgment and improve detection accuracy.
以上所述僅為本發明之較佳具體實例,非因此即侷限本發明之申請專利範圍,故舉凡運用本發明內容所為之等效變化,均同理皆包含於本發明之範圍內,合予陳明。The above descriptions are only preferred specific examples of the present invention, and are not intended to limit the patent scope of the present invention. Therefore, all equivalent changes made by using the content of the present invention are all included in the scope of the present invention in the same way. Chen Ming.
1:集塵系統 10:控制裝置 100:順序控制板 101:擴充版 11:噴氣裝置 110:噴氣管 111:氣閥 112:供氣裝置 12:淨化端粉塵濃度計 13:汙染端粉塵濃度計 14:儲存裝置 140:噴氣規律 141:劣化條件 142:電腦程式 20:濾袋 30:進氣口 31:氣室 32:出氣口 33:電磁閥 34:膜片閥 35:集塵槽 40:進氣口 41:氣室 42:出氣口 43:汙染端粉塵濃度計 44:淨化端粉塵濃度計 45:集塵槽 46:下料口 47:濾袋 50:供氣主管 51:氣閥 52:供氣支管 0:噴氣管 Port 1-Port 8:噴氣管 A1-A4、B1-B4、C1-C4、D1-D4:噴氣管 t1-t8:時間 S10-S15:劣化濾袋偵測步驟 S20-S24:定址步驟 S30-S32:劣化判斷步驟 1: Dust collection system 10: Control device 100: Sequential control board 101: Extended Edition 11: Jet device 110: jet pipe 111: air valve 112: Air supply device 12: Purification end dust concentration meter 13: Dust concentration meter at the pollution end 14: storage device 140: jet law 141: Deterioration condition 142: Computer program 20: filter bag 30: air inlet 31: air chamber 32: Air outlet 33: Solenoid valve 34: Diaphragm valve 35: Dust collecting tank 40: air inlet 41: air chamber 42: Air outlet 43: Dust concentration meter at the pollution end 44: Purification end dust concentration meter 45: Dust collecting tank 46: Feed port 47: filter bag 50: Gas supply supervisor 51: air valve 52: Air supply branch pipe 0: jet pipe Port 1-Port 8: Jet pipe A1-A4, B1-B4, C1-C4, D1-D4: jet pipe t1-t8: time S10-S15: Deterioration filter bag detection steps S20-S24: addressing steps S30-S32: Deterioration Judgment Steps
圖1為本發明一實施例的集塵系統的架構圖。FIG. 1 is a structural diagram of a dust collection system according to an embodiment of the present invention.
圖2為本發明一實施例的集塵系統的架構圖。Fig. 2 is a structural diagram of a dust collection system according to an embodiment of the present invention.
圖3為本發明一實施例的集塵系統的工作示意圖。Fig. 3 is a working diagram of the dust collection system according to an embodiment of the present invention.
圖4為本發明一實施例的集塵系統的外觀示意圖。Fig. 4 is a schematic diagram of the appearance of a dust collecting system according to an embodiment of the present invention.
圖5為本發明一實施例的噴氣規律的示意圖。Fig. 5 is a schematic diagram of an air injection pattern according to an embodiment of the present invention.
圖6為本發明一實施例的修改後的噴氣規律的示意圖。Fig. 6 is a schematic diagram of a modified air injection pattern according to an embodiment of the present invention.
圖7為本發明一實施例的修改後的噴氣規律的示意圖。Fig. 7 is a schematic diagram of a modified air injection pattern according to an embodiment of the present invention.
圖8為本發明一實施例的噴氣規律的示意圖。Fig. 8 is a schematic diagram of an air injection pattern according to an embodiment of the present invention.
圖9為本發明一實施例的噴氣規律的示意圖。Fig. 9 is a schematic diagram of an air injection pattern according to an embodiment of the present invention.
圖10為本發明一實施例的噴氣控制與汙染值的關係圖。Fig. 10 is a graph showing the relationship between air injection control and pollution value according to an embodiment of the present invention.
圖11為本發明一實施例的觸發時間表的示意圖。FIG. 11 is a schematic diagram of a trigger schedule according to an embodiment of the present invention.
圖12為本發明一實施例的噴氣規律的示意圖。Fig. 12 is a schematic diagram of an air injection pattern according to an embodiment of the present invention.
圖13為本發明一實施例的修改後的噴氣規律的示意圖。Fig. 13 is a schematic diagram of a modified air injection pattern according to an embodiment of the present invention.
圖14為本發明一實施例的噴氣規律的示意圖。Fig. 14 is a schematic diagram of an air injection pattern according to an embodiment of the present invention.
圖15為本發明一實施例的噴氣規律的示意圖。Fig. 15 is a schematic diagram of an air injection pattern according to an embodiment of the present invention.
圖16為本發明一實施例的劣化濾袋定址方法的流程圖。Fig. 16 is a flowchart of a method for addressing a degraded filter bag according to an embodiment of the present invention.
圖17為本發明一實施例的劣化濾袋定址方法的部分流程圖。Fig. 17 is a partial flowchart of a method for addressing a deteriorated filter bag according to an embodiment of the present invention.
圖18為本發明一實施例的劣化濾袋定址方法的部分流程圖。Fig. 18 is a partial flowchart of a method for addressing a deteriorated filter bag according to an embodiment of the present invention.
S10-S15:劣化濾袋偵測步驟 S10-S15: Deterioration filter bag detection steps
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