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影響燃氣發電機組啟動時間的因素有哪些?

返回 2025.07.25 來源:http://m.pyucoin.com 0

  燃氣發電機組作為應急供電或分布式能源的重要設備,其啟動速度直接影響供電的及時性,尤其在停電應急場景中,啟動時間的長短關乎生產安全與生活保障。燃氣發電機組的啟動時間并非固定數值,而是受設備類型、啟動方式、環境條件等多重因素影響,從幾秒到數分鐘不等,了解其啟動過程與影響因素,有助于合理規劃機組應用場景。

  As an important equipment for emergency power supply or distributed energy, the start-up speed of gas generators directly affects the timeliness of power supply, especially in power outage emergency scenarios. The length of start-up time is related to production safety and life security. The start-up time of a gas-fired generator set is not a fixed value, but is influenced by multiple factors such as equipment type, start-up method, and environmental conditions, ranging from a few seconds to a few minutes. Understanding its start-up process and influencing factors can help plan the application scenarios of the unit reasonably.

  燃氣發電機組的啟動流程包含多個依次銜接的環節,各環節的耗時共同構成總啟動時間。首先是準備階段,控制系統接收到啟動指令后,需完成自檢(如檢查機油壓力、水箱水位、燃氣壓力是否正常),這一過程通常需要 5-10 秒,若檢測到異常(如機油不足),系統會自動終止啟動并發出警報。接著是啟動馬達帶動發動機轉動,通過壓縮空氣或電啟動方式使曲軸旋轉,直至達到點火所需的轉速(通常為 800-1000 轉 / 分鐘),電啟動方式耗時較短,約 3-5 秒,壓縮空氣啟動因需要建立氣壓,耗時略長(5-8 秒)。點火成功后,發動機進入怠速暖機階段,此時轉速維持在 1000-1500 轉 / 分鐘,待水溫、油溫升至適宜范圍(水溫約 50℃、油溫約 40℃),才能逐步加載至額定轉速(1500 轉 / 分鐘或 3000 轉 / 分鐘),暖機時間根據環境溫度差異較大,常溫下約 30-60 秒,低溫環境(如 - 10℃以下)可能需要 2-3 分鐘,若未充分暖機就加載,易造成發動機磨損。最后是并網或供電切換階段,機組需與電網同步(電壓、頻率、相位匹配),這一過程約 5-10 秒,整體來看,常規燃氣發電機組從啟動指令發出到穩定供電,總時間在 1-5 分鐘范圍內。

  The start-up process of a gas-fired generator set includes multiple sequential links, and the time consumption of each link together constitutes the total start-up time. Firstly, in the preparation stage, after receiving the start command, the control system needs to complete a self check (such as checking whether the oil pressure, water level in the tank, and gas pressure are normal). This process usually takes 5-10 seconds. If an abnormality is detected (such as insufficient oil), the system will automatically terminate the start and issue an alarm. Next, the starter motor drives the engine to rotate, and the crankshaft rotates through compressed air or electric starting until it reaches the required ignition speed (usually 800-1000 revolutions per minute). Electric starting takes less time, about 3-5 seconds, while compressed air starting takes slightly longer (5-8 seconds) due to the need to establish air pressure. After successful ignition, the engine enters the idle warm-up phase, where the speed is maintained at 1000-1500 revolutions per minute. Only when the water temperature and oil temperature reach the appropriate range (about 50 ℃ for water temperature and about 40 ℃ for oil temperature), can it gradually load to the rated speed (1500 rpm or 3000 rpm). The warm-up time varies greatly depending on the ambient temperature, with about 30-60 seconds at room temperature and 2-3 minutes in low temperature environments (such as below -10 ℃). If the engine is not fully warmed up before loading, it may cause engine wear. Finally, during the grid connection or power supply switching phase, the unit needs to synchronize with the grid (voltage, frequency, phase matching), which takes about 5-10 seconds. Overall, the total time for a conventional gas-fired generator set from the start command to stable power supply is within the range of 1-5 minutes.

  不同類型的燃氣發電機組,啟動時間存在顯著差異。小型便攜式燃氣發電機組(功率 5-50 千瓦)因結構簡單、部件輕便,啟動流程簡化,從啟動到供電通常只需 1-2 分鐘。這類機組多采用電啟動方式,省略復雜的預熱環節,適合家庭應急或小型設備臨時供電,但其暖機不充分可能影響壽命。中型機組(功率 50-500 千瓦)配置相對完善,包含必要的預熱系統,啟動時間通常為 2-3 分鐘,能在保證機組安全的前提下較快供電,廣泛應用于商業建筑、中小型工廠的應急供電。大型燃氣發電機組(功率 500 千瓦以上)因發動機體積大、部件慣性強,啟動流程更復雜,需經過嚴格的預熱、吹掃(排除缸內可能存在的可燃氣體)、同步等步驟,啟動時間往往需要 3-5 分鐘,但其穩定性高,適合大型工業場所或電網調峰使用。

  There are significant differences in the start-up time of different types of gas-fired generator sets. Small portable gas generator sets (with a power of 5-50 kW) typically take only 1-2 minutes from start-up to power supply due to their simple structure, lightweight components, and simplified start-up process. These types of units often use electric starting methods, omitting complex preheating steps, making them suitable for household emergency or temporary power supply for small equipment. However, insufficient warm-up may affect their lifespan. Medium sized units (with a power of 50-500 kilowatts) are relatively well-equipped, including necessary preheating systems. The start-up time is usually 2-3 minutes, and they can provide power quickly while ensuring the safety of the unit. They are widely used for emergency power supply in commercial buildings and small and medium-sized factories. Large gas generator sets (with a power of over 500 kilowatts) require strict preheating, purging (to eliminate possible combustible gases in the cylinder), synchronization, and other steps due to their large engine volume, strong component inertia, and more complex start-up process. The start-up time often takes 3-5 minutes, but it has high stability and is suitable for use in large industrial sites or power grid peak shaving.

  啟動方式的選擇直接影響燃氣發電機組的啟動速度。電啟動是最常見的方式,通過蓄電池驅動啟動馬達帶動發動機,啟動響應快(3-5 秒即可帶動曲軸轉動),但受蓄電池電量影響,低溫環境下若電量不足,可能出現啟動失敗,需配備蓄電池保溫裝置或備用電源。壓縮空氣啟動則利用高壓空氣(壓力通常為 0.6-0.8MPa)推動氣動馬達,適合大型機組,啟動扭矩大,不受低溫影響,但需提前儲備壓縮空氣,充氣過程會增加整體啟動時間。全自動啟動方式(搭配 ATS 自動轉換開關)能進一步縮短響應時間,當檢測到電網斷電后,系統會在 1-2 秒內發出啟動指令,比手動啟動節省操作時間,尤其適合無人值守的應急場景,從斷電到機組供電的總時間可控制在 3 分鐘以內。

  The choice of starting method directly affects the starting speed of the gas generator set. Electric starting is the most common method, which uses a battery to drive the starter motor to drive the engine. The starting response is fast (3-5 seconds can drive the crankshaft to rotate), but due to the influence of battery power, if the battery power is insufficient in low-temperature environments, starting failure may occur, and battery insulation devices or backup power sources need to be equipped. Compressed air start-up uses high-pressure air (usually 0.6-0.8MPa) to drive the pneumatic motor, which is suitable for large units with high starting torque and is not affected by low temperatures. However, compressed air needs to be reserved in advance, and the inflation process will increase the overall start-up time. The fully automatic start mode (combined with ATS automatic transfer switch) can further shorten the response time. When a power outage is detected, the system will issue a start command within 1-2 seconds, saving operation time compared to manual start, especially suitable for unmanned emergency scenarios. The total time from power outage to unit power supply can be controlled within 3 minutes.

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  環境條件對燃氣發電機組的啟動時間有不可忽視的影響。低溫環境(低于 0℃)會導致機油粘度增加、蓄電池容量下降,發動機轉動阻力增大,啟動馬達帶動曲軸達到點火轉速的時間延長,可能比常溫下增加 50% 以上,此時需啟用預熱系統(如缸體加熱器、進氣預熱器),預熱時間通常為 1-3 分鐘,雖增加了啟動總時間,但能保證啟動成功率。高溫高濕環境(溫度超過 35℃、濕度超過 85%)會影響燃氣與空氣的混合比例,可能導致點火延遲或啟動后轉速波動,需通過調整空燃比補償,啟動時間會增加 10%-20%。高海拔地區(海拔超過 1000 米)因空氣稀薄,發動機進氣量不足,啟動時可能需要多次嘗試才能成功,啟動時間比平原地區延長 20-30 秒,且需對化油器或燃氣噴射系統進行改裝,以適應低氣壓環境。

  The environmental conditions have an undeniable impact on the start-up time of gas-fired power generation units. Low temperature environment (below 0 ℃) can cause an increase in oil viscosity, a decrease in battery capacity, an increase in engine rotational resistance, and a longer time for the starter motor to drive the crankshaft to ignition speed, which may be more than 50% longer than at room temperature. At this time, preheating systems (such as cylinder block heaters and intake preheaters) need to be activated, and the preheating time is usually 1-3 minutes. Although it increases the total starting time, it can ensure the success rate of starting. High temperature and high humidity environment (temperature exceeding 35 ℃, humidity exceeding 85%) can affect the mixing ratio of gas and air, which may cause ignition delay or speed fluctuation after starting. It is necessary to compensate by adjusting the air-fuel ratio, and the starting time will increase by 10% -20%. In high-altitude areas (over 1000 meters above sea level), due to thin air and insufficient engine intake, multiple attempts may be required to successfully start the engine. The start-up time is 20-30 seconds longer than in plain areas, and the carburetor or gas injection system needs to be modified to adapt to low-pressure environments.

  維護狀況良好的燃氣發電機組,啟動時間更穩定且偏短。發動機若長期未保養,機油變質會增加摩擦阻力,濾芯堵塞會導致進氣、供油不足,啟動時可能出現 “啟動困難”(多次嘗試才能成功),使啟動時間延長甚至翻倍。啟動系統部件(如啟動馬達、電磁閥)的磨損,會導致啟動動力不足,曲軸轉速難以達到點火要求,需更換部件才能恢復正常啟動速度。相反,定期更換機油、清理濾芯、檢查啟動系統的機組,各環節運行順暢,啟動時間能保持在設計范圍內,減少意外延誤。

  A well maintained gas generator set has a more stable and shorter start-up time. If the engine is not maintained for a long time, the deterioration of the engine oil will increase frictional resistance, and the blockage of the filter element will lead to insufficient intake and fuel supply. During startup, there may be "difficulty starting" (multiple attempts are required to succeed), which can prolong or even double the startup time. The wear and tear of components in the starting system (such as the starter motor and solenoid valve) can lead to insufficient starting power and difficulty in achieving the required crankshaft speed for ignition. Replacement of these components is necessary to restore normal starting speed. On the contrary, regularly changing the engine oil, cleaning the filter element, and checking the starting system of the unit can ensure smooth operation in all aspects and keep the starting time within the design range, reducing unexpected delays.

  燃氣發電機組的啟動時間是多種因素共同作用的結果,常規情況下從啟動到穩定供電需 1-5 分鐘,具體時間需結合機組類型、啟動方式、環境條件及維護狀況綜合判斷。在實際應用中,需根據場景對供電及時性的要求選擇合適的機組 —— 應急供電(如醫院、數據中心)應優先選擇啟動速度快(3 分鐘以內)的中型全自動機組;對啟動時間要求不高的常規發電(如養殖場、工廠自備電源),可選擇性價比更高的普通機組。同時,做好機組的日常維護與環境適應性改造,能有效保證啟動時間的穩定性,確保在需要時及時發揮作用。

  The start-up time of a gas-fired generator set is the result of multiple factors working together. Under normal circumstances, it takes 1-5 minutes from start-up to stable power supply. The specific time needs to be comprehensively judged based on the type of unit, start-up method, environmental conditions, and maintenance status. In practical applications, suitable units should be selected according to the requirements of power supply timeliness in the scenario - emergency power supply (such as hospitals, data centers) should prioritize medium-sized fully automatic units with fast start-up speed (within 3 minutes); For conventional power generation systems that do not require high start-up time (such as farms or factories with their own power sources), more cost-effective conventional units can be chosen. At the same time, carrying out daily maintenance and environmental adaptability modification of the unit can effectively ensure the stability of the start-up time and ensure timely effectiveness when needed.

  本文由燃氣發電機組友情奉獻.更多有關的知識請點擊:http://m.pyucoin.com我們將會對您提出的疑問進行詳細的解答,歡迎您登錄網站留言.

  This article is a friendly contribution from a gas generator set For more information, please click: http://m.pyucoin.com We will provide detailed answers to your questions. You are welcome to log in to our website and leave a message

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影響燃氣發電機組啟動時間的因素有哪些?

  燃氣發電機組作為應急供電或分布式能源的重要設備,其啟動速度直接影響供電的及時性,尤其在停電應急場景中,啟動時間的長短關乎生產安全與生活保障。燃氣發電機組的啟動時間并非固定數值,而是受設備類型、啟動方式、環境條件等多重因素影響,從幾秒到數分鐘不等,了解其啟動過程與影響因素,有助于合理規劃機組應用場景。

  As an important equipment for emergency power supply or distributed energy, the start-up speed of gas generators directly affects the timeliness of power supply, especially in power outage emergency scenarios. The length of start-up time is related to production safety and life security. The start-up time of a gas-fired generator set is not a fixed value, but is influenced by multiple factors such as equipment type, start-up method, and environmental conditions, ranging from a few seconds to a few minutes. Understanding its start-up process and influencing factors can help plan the application scenarios of the unit reasonably.

  燃氣發電機組的啟動流程包含多個依次銜接的環節,各環節的耗時共同構成總啟動時間。首先是準備階段,控制系統接收到啟動指令后,需完成自檢(如檢查機油壓力、水箱水位、燃氣壓力是否正常),這一過程通常需要 5-10 秒,若檢測到異常(如機油不足),系統會自動終止啟動并發出警報。接著是啟動馬達帶動發動機轉動,通過壓縮空氣或電啟動方式使曲軸旋轉,直至達到點火所需的轉速(通常為 800-1000 轉 / 分鐘),電啟動方式耗時較短,約 3-5 秒,壓縮空氣啟動因需要建立氣壓,耗時略長(5-8 秒)。點火成功后,發動機進入怠速暖機階段,此時轉速維持在 1000-1500 轉 / 分鐘,待水溫、油溫升至適宜范圍(水溫約 50℃、油溫約 40℃),才能逐步加載至額定轉速(1500 轉 / 分鐘或 3000 轉 / 分鐘),暖機時間根據環境溫度差異較大,常溫下約 30-60 秒,低溫環境(如 - 10℃以下)可能需要 2-3 分鐘,若未充分暖機就加載,易造成發動機磨損。最后是并網或供電切換階段,機組需與電網同步(電壓、頻率、相位匹配),這一過程約 5-10 秒,整體來看,常規燃氣發電機組從啟動指令發出到穩定供電,總時間在 1-5 分鐘范圍內。

  The start-up process of a gas-fired generator set includes multiple sequential links, and the time consumption of each link together constitutes the total start-up time. Firstly, in the preparation stage, after receiving the start command, the control system needs to complete a self check (such as checking whether the oil pressure, water level in the tank, and gas pressure are normal). This process usually takes 5-10 seconds. If an abnormality is detected (such as insufficient oil), the system will automatically terminate the start and issue an alarm. Next, the starter motor drives the engine to rotate, and the crankshaft rotates through compressed air or electric starting until it reaches the required ignition speed (usually 800-1000 revolutions per minute). Electric starting takes less time, about 3-5 seconds, while compressed air starting takes slightly longer (5-8 seconds) due to the need to establish air pressure. After successful ignition, the engine enters the idle warm-up phase, where the speed is maintained at 1000-1500 revolutions per minute. Only when the water temperature and oil temperature reach the appropriate range (about 50 ℃ for water temperature and about 40 ℃ for oil temperature), can it gradually load to the rated speed (1500 rpm or 3000 rpm). The warm-up time varies greatly depending on the ambient temperature, with about 30-60 seconds at room temperature and 2-3 minutes in low temperature environments (such as below -10 ℃). If the engine is not fully warmed up before loading, it may cause engine wear. Finally, during the grid connection or power supply switching phase, the unit needs to synchronize with the grid (voltage, frequency, phase matching), which takes about 5-10 seconds. Overall, the total time for a conventional gas-fired generator set from the start command to stable power supply is within the range of 1-5 minutes.

  不同類型的燃氣發電機組,啟動時間存在顯著差異。小型便攜式燃氣發電機組(功率 5-50 千瓦)因結構簡單、部件輕便,啟動流程簡化,從啟動到供電通常只需 1-2 分鐘。這類機組多采用電啟動方式,省略復雜的預熱環節,適合家庭應急或小型設備臨時供電,但其暖機不充分可能影響壽命。中型機組(功率 50-500 千瓦)配置相對完善,包含必要的預熱系統,啟動時間通常為 2-3 分鐘,能在保證機組安全的前提下較快供電,廣泛應用于商業建筑、中小型工廠的應急供電。大型燃氣發電機組(功率 500 千瓦以上)因發動機體積大、部件慣性強,啟動流程更復雜,需經過嚴格的預熱、吹掃(排除缸內可能存在的可燃氣體)、同步等步驟,啟動時間往往需要 3-5 分鐘,但其穩定性高,適合大型工業場所或電網調峰使用。

  There are significant differences in the start-up time of different types of gas-fired generator sets. Small portable gas generator sets (with a power of 5-50 kW) typically take only 1-2 minutes from start-up to power supply due to their simple structure, lightweight components, and simplified start-up process. These types of units often use electric starting methods, omitting complex preheating steps, making them suitable for household emergency or temporary power supply for small equipment. However, insufficient warm-up may affect their lifespan. Medium sized units (with a power of 50-500 kilowatts) are relatively well-equipped, including necessary preheating systems. The start-up time is usually 2-3 minutes, and they can provide power quickly while ensuring the safety of the unit. They are widely used for emergency power supply in commercial buildings and small and medium-sized factories. Large gas generator sets (with a power of over 500 kilowatts) require strict preheating, purging (to eliminate possible combustible gases in the cylinder), synchronization, and other steps due to their large engine volume, strong component inertia, and more complex start-up process. The start-up time often takes 3-5 minutes, but it has high stability and is suitable for use in large industrial sites or power grid peak shaving.

  啟動方式的選擇直接影響燃氣發電機組的啟動速度。電啟動是最常見的方式,通過蓄電池驅動啟動馬達帶動發動機,啟動響應快(3-5 秒即可帶動曲軸轉動),但受蓄電池電量影響,低溫環境下若電量不足,可能出現啟動失敗,需配備蓄電池保溫裝置或備用電源。壓縮空氣啟動則利用高壓空氣(壓力通常為 0.6-0.8MPa)推動氣動馬達,適合大型機組,啟動扭矩大,不受低溫影響,但需提前儲備壓縮空氣,充氣過程會增加整體啟動時間。全自動啟動方式(搭配 ATS 自動轉換開關)能進一步縮短響應時間,當檢測到電網斷電后,系統會在 1-2 秒內發出啟動指令,比手動啟動節省操作時間,尤其適合無人值守的應急場景,從斷電到機組供電的總時間可控制在 3 分鐘以內。

  The choice of starting method directly affects the starting speed of the gas generator set. Electric starting is the most common method, which uses a battery to drive the starter motor to drive the engine. The starting response is fast (3-5 seconds can drive the crankshaft to rotate), but due to the influence of battery power, if the battery power is insufficient in low-temperature environments, starting failure may occur, and battery insulation devices or backup power sources need to be equipped. Compressed air start-up uses high-pressure air (usually 0.6-0.8MPa) to drive the pneumatic motor, which is suitable for large units with high starting torque and is not affected by low temperatures. However, compressed air needs to be reserved in advance, and the inflation process will increase the overall start-up time. The fully automatic start mode (combined with ATS automatic transfer switch) can further shorten the response time. When a power outage is detected, the system will issue a start command within 1-2 seconds, saving operation time compared to manual start, especially suitable for unmanned emergency scenarios. The total time from power outage to unit power supply can be controlled within 3 minutes.

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  環境條件對燃氣發電機組的啟動時間有不可忽視的影響。低溫環境(低于 0℃)會導致機油粘度增加、蓄電池容量下降,發動機轉動阻力增大,啟動馬達帶動曲軸達到點火轉速的時間延長,可能比常溫下增加 50% 以上,此時需啟用預熱系統(如缸體加熱器、進氣預熱器),預熱時間通常為 1-3 分鐘,雖增加了啟動總時間,但能保證啟動成功率。高溫高濕環境(溫度超過 35℃、濕度超過 85%)會影響燃氣與空氣的混合比例,可能導致點火延遲或啟動后轉速波動,需通過調整空燃比補償,啟動時間會增加 10%-20%。高海拔地區(海拔超過 1000 米)因空氣稀薄,發動機進氣量不足,啟動時可能需要多次嘗試才能成功,啟動時間比平原地區延長 20-30 秒,且需對化油器或燃氣噴射系統進行改裝,以適應低氣壓環境。

  The environmental conditions have an undeniable impact on the start-up time of gas-fired power generation units. Low temperature environment (below 0 ℃) can cause an increase in oil viscosity, a decrease in battery capacity, an increase in engine rotational resistance, and a longer time for the starter motor to drive the crankshaft to ignition speed, which may be more than 50% longer than at room temperature. At this time, preheating systems (such as cylinder block heaters and intake preheaters) need to be activated, and the preheating time is usually 1-3 minutes. Although it increases the total starting time, it can ensure the success rate of starting. High temperature and high humidity environment (temperature exceeding 35 ℃, humidity exceeding 85%) can affect the mixing ratio of gas and air, which may cause ignition delay or speed fluctuation after starting. It is necessary to compensate by adjusting the air-fuel ratio, and the starting time will increase by 10% -20%. In high-altitude areas (over 1000 meters above sea level), due to thin air and insufficient engine intake, multiple attempts may be required to successfully start the engine. The start-up time is 20-30 seconds longer than in plain areas, and the carburetor or gas injection system needs to be modified to adapt to low-pressure environments.

  維護狀況良好的燃氣發電機組,啟動時間更穩定且偏短。發動機若長期未保養,機油變質會增加摩擦阻力,濾芯堵塞會導致進氣、供油不足,啟動時可能出現 “啟動困難”(多次嘗試才能成功),使啟動時間延長甚至翻倍。啟動系統部件(如啟動馬達、電磁閥)的磨損,會導致啟動動力不足,曲軸轉速難以達到點火要求,需更換部件才能恢復正常啟動速度。相反,定期更換機油、清理濾芯、檢查啟動系統的機組,各環節運行順暢,啟動時間能保持在設計范圍內,減少意外延誤。

  A well maintained gas generator set has a more stable and shorter start-up time. If the engine is not maintained for a long time, the deterioration of the engine oil will increase frictional resistance, and the blockage of the filter element will lead to insufficient intake and fuel supply. During startup, there may be "difficulty starting" (multiple attempts are required to succeed), which can prolong or even double the startup time. The wear and tear of components in the starting system (such as the starter motor and solenoid valve) can lead to insufficient starting power and difficulty in achieving the required crankshaft speed for ignition. Replacement of these components is necessary to restore normal starting speed. On the contrary, regularly changing the engine oil, cleaning the filter element, and checking the starting system of the unit can ensure smooth operation in all aspects and keep the starting time within the design range, reducing unexpected delays.

  燃氣發電機組的啟動時間是多種因素共同作用的結果,常規情況下從啟動到穩定供電需 1-5 分鐘,具體時間需結合機組類型、啟動方式、環境條件及維護狀況綜合判斷。在實際應用中,需根據場景對供電及時性的要求選擇合適的機組 —— 應急供電(如醫院、數據中心)應優先選擇啟動速度快(3 分鐘以內)的中型全自動機組;對啟動時間要求不高的常規發電(如養殖場、工廠自備電源),可選擇性價比更高的普通機組。同時,做好機組的日常維護與環境適應性改造,能有效保證啟動時間的穩定性,確保在需要時及時發揮作用。

  The start-up time of a gas-fired generator set is the result of multiple factors working together. Under normal circumstances, it takes 1-5 minutes from start-up to stable power supply. The specific time needs to be comprehensively judged based on the type of unit, start-up method, environmental conditions, and maintenance status. In practical applications, suitable units should be selected according to the requirements of power supply timeliness in the scenario - emergency power supply (such as hospitals, data centers) should prioritize medium-sized fully automatic units with fast start-up speed (within 3 minutes); For conventional power generation systems that do not require high start-up time (such as farms or factories with their own power sources), more cost-effective conventional units can be chosen. At the same time, carrying out daily maintenance and environmental adaptability modification of the unit can effectively ensure the stability of the start-up time and ensure timely effectiveness when needed.

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