3 measurements spanning 7 days, net +1. Dots are measurements; the straight line between them is drawn to join them, not to claim we know the path taken in between — snapshots are recorded only when a count changes, so gaps mean “no change observed”, never “interpolated”. The vertical axis spans 113–114 and does not start at zero.
Measurement log — every subscribers count we have recorded
Measured (UTC)
Subscribers
Change
12 Aug 2026, 22:43
114
+1
9 Aug 2026, 06:15
113
no change
6 Aug 2026, 05:19
113
first reading
Engagement
20 posts held, back to 16 June 2026 — the reader has not yet reached the start of this channel’s public history, so older posts may sit further back, unread. Read across 1 pageof Telegram’s post history, 20 posts per page.
ERR · 30 days
58.7%
avg views ÷ 114 subscribers
Avg views / post
66.9
11 posts measured
Reaction rate
3.08%
reactions ÷ views · ER floor
Posts in window
11
of 20 held
ERR is average views per post over the last 30 days divided by subscribers, the definition TGStat uses, so this figure is comparable with the one you will see elsewhere. It falls structurally as a channel grows: a high ERR on a small channel and a low one on a large channel describe reach mathematics, not quality. We publish the figure and the sample it came from and pass no verdict on it.
ER is defined industry-wide as (forwards + reactions + comments) ÷ views— note the denominator is views, not subscribers. Telegram’s public web preview carries views and reactions but not forward or comment counts, so the reaction rate above is the reactions term only and is therefore a floor: the true ER for this channel is higher by an amount we have not measured and will not estimate. It is computed over the 8 of 11 measured posts that carry a reaction reading, and over those same posts' views.
What these figures were computed from
Window
Rolling 30 days · latest post in window 2 August 2026
Posts held
20 (16 June 2026 – 2 August 2026)
Views total
736
Reactions total
17
Forwards / comments
not exposed by the public surface — not measured, not estimated
Readings taken
9 Aug 2026, 06:15 UTC
Views are a single reading per post, taken at the time above. A post published in the last day or two is still accumulating views, which pulls the 30-day average down slightly. That is a property of the standard definition rather than a fault in it, so we keep the definition rather than “correcting” the number into something nobody can reproduce.
Precision. Telegram publishes view counts on its public widget in short form — 8.12K, 3.7M — so any reading at or above 1,000 reaches us rounded to three significant figures, and only counts below 1,000 are exact. Averages and rates derived from them are shown to the same precision rather than to the unit: a figure like 3,701,250 would assert digits nobody measured.
Reaction counts are published per emoji and rounded the same way, so a total below 1,000 is exact and a larger one is a sum that may carry a rounded component from each emoji above 1,000. Because it is a sum, it does not look rounded — read a large reaction total as three significant figures per contributing emoji rather than as the figure it prints.
Reaction mix
30 reactions across 16 posts, in 4 distinct kinds. The most used accounts for 83.3% of them.
Every reaction kind recorded on the sample, most used first
Reaction
Count
Share
Share, drawn
❤
25
83.3%
👍
2
6.67%
🔥
2
6.67%
👏
1
3.33%
No sentiment is inferred, and none should be read in. This table is ordered by count and by nothing else. Emoji do not carry stable meaning across languages or communities — 🙏 is thanks in one channel and mourning in another — so we publish which ones were pressed and how often, and pass no judgement on what an audience meant by them.
Precision. Telegram publishes reaction counts per emoji and short-forms each one — 4.34K, 1.2M — so any single kind at or above 1,000 reaches us at three significant figures, and only counts below 1,000 are exact. The shares above are ratios of those figures and carry the same error. This is also why the total here can differ slightly from a reaction total printed elsewhere on the page: both are sums of the same rounded parts, taken over samples with different edges.
Coverage. Reactions were read on 16 of the 20 sampled posts in this sample. Summed by Telegram’s own count on each post — not by adding up the per-emoji breakdown above — those same posts carry 30reactions in total: the kind of figure the paragraph above means by “a reaction total printed elsewhere on the page”.
Measured over the 20 most recent posts we hold, published 16 June 2026 to 2 August 2026, using the newest reading held for each. Telegram Stars are excluded: they are a payment, not a reaction, and they have their own section.
📄 Paper Of The Week
⚡عنوان مقاله:
Current Trends and Challenges in Solar PV-Integrated Battery Energy Storage Technology: Key Components, Methods, and Future Prospects
✍️نویسندگان:
Mehmet Kurtoğlu, Fatih Eroğlu
📉مجله و سال چاپ:
Applied Energy | 2026
DOI: 10.1016/j.apenergy.2026.127461
🔎 معرفی و خلاصهٔ مقاله:
سیستمهای ذخیرهسازی انرژی باتری (BESS) نقش مهمی در بهبود عملکرد سیستمهای فتوولتائیک خورشیدی ایفا میکنند، …
☀️چرا تلفیق تصفیهخانههای فاضلاب با انرژی خورشیدی یک استراتژی هوشمندانه است؟
تصفیهخانههای فاضلاب (WWTPs)
از انرژیبرترین زیرساختهای عمومی هر شهر هستند. فعالیتهای مداوم این مجموعهها، تقاضای برق پایدار و بالایی ایجاد میکند که مدیریت هزینههای عملیاتی آن (OpEx) همواره یک چالش است.
❓نکته تحلیلی:
بخش عمدهای از مصرف برق این مراکز مربوط به پمپها، دمندهها و سیستمهای هوادهی (Aeration) است. جالب اینجاست که پروفیل …
⚡️ گام جدید وزارت نیرو در توسعه بازار برق سبز؛ نقشه راه حضور «نهادهای تجمیعکننده» در تابلوی سبز بورس
ابلاغ ضوابط ایجاد «نهاد تجمیعکننده برق تجدیدپذیر»، تحولی بزرگ در تسهیل حضور نیروگاههای کوچک و متوسط در بازار برق کشور است.
💡 چرا نقش نهادهای تجمیعکننده حیاتی است؟
🔹 مدیریت ریسک نوسانات: مدیریت نوسانات تولید (ناشی از ماهیت متغیر انرژیهای تجدیدپذیر) و کاهش ریسکهای عملیاتی نیروگاههای کوچکمقیاس.
🔹 تسهیل ورود به …
🇪🇸 فناوریهای پیشران خورشیدی در اسپانیا (Solar Technologies)
اسپانیا برای مدیریت شبکه و عبور از چالشهای فنی تجدیدپذیرها، از یک Multi-technology Approach فوقالعاده استفاده میکند. در این پست، تکنولوژیهای کلیدی خورشیدی این کشور را بررسی میکنیم:
1️⃣ Utility-scale & Distributed PV:
احداث نیروگاههای خورشیدی عظیم چندصد مگاواتی در مناطق پرتابش جنوبی (مانند اندلس) در کنار رشد چشمگیر سیستمهای خودمصرفی (Self-consumptio…
از قهرمانی فوتبال تا درخشش در انرژی خورشیدی
به مناسبت قهرمانی اسپانیا، بیایید نگاهی بندازیم به کارنامهی درخشان این کشور در حوزهی Solar Energy که دستکمی از قهرمانیهای ورزشیاش ندارد!
اسپانیا با داشتن یکی از بالاترین نرخهای تابش خورشیدی در اروپا (High Solar Irradiation)، به یکی از بزرگترین قطبهای تولید برق خورشیدی دنیا تبدیل شده است.
📊 آمار و ارقام کلیدی (تا پایان سال 2024):
- Installed Capacity: ظرفیت نصبشده…
پارکینگها فقط محلی برای توقف خودرو نیستند؛ این فضاهای موجود میتوانند به زیرساختی چندمنظوره تبدیل شوند.
یکی از راهکارهای موثر در این زمینه، استفاده از سایهبانهای خورشیدی (Solar Canopies) است.
با اجرای این سازهها، یک پارکینگ ساده میتواند همزمان چند کارکرد مهم داشته باشد:
✅تولید برق از انرژی خورشیدی
✅کاهش دمای سطح و اثر جزیره حرارتی
✅محافظت از خودروها در برابر آفتاب و باران
✅پشتیبانی از شارژ خودروهای برقی
✅بهبو…
📉بازار جهانی انرژی خورشیدی با سرعت برق و باد در حال تغییر است. چین بهتازگی استانداردهای جدید و سختگیرانهای را برای تولید تجهیزات فتوولتائیک (PV) رونمایی کرده که از ۱ ژانویه ۲۰۲۷ اجرایی میشود. این تغییرات، عملاً یک Global Benchmark جدید برای تمام زنجیره تأمین خورشیدی ایجاد میکند.
📍 نکات کلیدی این سیاست جدید:
✅ افزایش حداقلی راندمان (Efficiency Thresholds):
چین دیگر اجازه تولید تکنولوژیهای قدیمی با راندمان پای…
#امنیت_انرژی
🔹بخش پالایشگاهی روسیه اکنون در حال تحمل اثرات انباشتهی یک کارزار هوایی مستمر از سوی اوکراین است. پردازش نفت خام در این ماه به ۳.۹۱ میلیون بشکه در روز سقوط کرده که پایینترین سطح از مارس ۲۰۰۵ تاکنون است؛ رقمی که حدود ۱.۴ میلیون بشکه کمتر از میانگین سال گذشته است.
🔹ابعاد این کارزار، گویای این اعداد است. نیروهای اوکراینی در ۱۰۰ روز گذشته حداقل ۲۴ پالایشگاه از ۳۴ پالایشگاه بزرگ روسیه را هدف قرار دادهاند، …
📝 Paper of The Week:
Exploring pathways for accelerating energy transition and technological innovation in the power sector
Authors: Ruoxue Zhang, Yin Yang, Zhenyu Zhou, Jiashun Huang
Year of Publication: 2026
📌 موضوع و متدولوژی پژوهش:
این مطالعه با بهرهگیری از مدلسازی سیستمهای انرژی (LEAP)، پنج سناریوی مختلف گذار را برای بخش برق چین تا افق ۲۰۶۰ ارزیابی میکند. تمرکز اصلی پژوهش بر تحلیل تطبیقی چهار شاخص کلیدی ا…
❤1
Showing the 12 most recent of 20 posts we hold for @EnergyEngAssociation. View and reaction counts are the latest single reading for each post, not a live figure, and a recent post is still accumulating both. A view count marked ≈ was rounded by Telegram before we ever saw it — t.me prints views in full below 1,000 and to three significant figures above, so ≈1,200,000 means somewhere between 1,150,000 and 1,249,999. Unmarked counts are exact. Text is reproduced from the public post preview and truncated for length.
Citation-graph rank
Citation-graph rank — 780,366 of 1,169,250entries in the measured graph. A weighted position computed from the forward and mention edges below — republished posts weigh more than named mentions — and recomputed periodically, over the whole graph. Published only as this ordinal position, never as a score: a position is a fact, and a score printed beside one channel’s name would read as a verdict this register does not make. The two counts beneath stay separate for the same reason mentions are never summed with forwards anywhere else on this page — a named-by count costs nothing to manufacture. The top 100 by this measure, or how it is computed.
Forward network
Republishes
Channels on the register whose posts this channel has forwarded.
Built only from forwarded posts we have actually read, on both sides. Coverage is early and deliberately incomplete: a missing link means we have not read the post that would prove it, never that the relationship does not exist. Counts are distinct forwarded posts observed, so they only ever go up as we read more.
Mentions
Named by 1 registered channel — every channel on the register whose own posts have named this one, by its current username or any other username it currently holds, merged from two separately captured readings of the same fact so a namer caught by only one of them is not missed and a namer both caught is not counted twice. A username this channel has since dropped is not matched — that handle may belong to someone else now, and crediting today’s namer to yesterday’s owner would misattribute it.
Named by
Channels on the register whose posts name this channel's handle.
A mention is a weaker signal than a forward and is counted separately for that reason — naming a channel is not republishing it, and a handle in a post body is easy to place deliberately. The post counts beside each row below are distinct posts in which the handle appeared, from posts we have read on both sides — the “Named by N registered channels” figure above is a different count, of distinct NAMING CHANNELS rather than posts, and is not the sum of the rows under it.
Cite this entry
A live page changes as we take new readings, so a citation should name the measurement it is based on, not just the URL. The line below cites the subscriber count as measured 12 August 2026 — this
entry's latest reading, not the date you are reading this.
“انجمن علمي مهندسی انرژی” (@EnergyEngAssociation), 114 subscribers as measured 12 August 2026. Telegram Register, tgregister.com/channel/EnergyEngAssociation.
Full measurement history, CC BY 4.0. Every reading this register holds for this entry, not just the latest one, as a dated, downloadable record: CSV · JSON. Free to use with attribution to tgregister.com. Each file carries its own generation timestamp, which is the figure to cite for exactly when the data was retrieved.